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Showing posts sorted by relevance for query project orion, ames research center. Sort by date Show all posts

Saturday, September 29, 2012

THE NEXT BILLION YEARS

A half century ago, I got to know the originators of Project Cyclops, Barney Oliver of Hewlett-Packard and Jack Billingham of the Ames Research Center.  They had led a NASA-sponsored workshop on "The Next Billion Years,"  which determined that for $10 billion (today worth $50 billion), they could build 1000 100-meter antennas to search the sky at the waterhole to detect emissions from advanced civilizations.  What if the solution to world peace, cure for cancer or clue on how to bottle fusion were beaming in, sort of like CONTACT, the book by Carl Sagan and movie with Jodie Foster?

After becoming involved with NASA's Earth 2020:  Visions for Our Children's Children, in 1974, I was inspired to spend the summer of '76 at the Ames Research Center on Project Orion, for the key question in those days was:  Are we the only solar system in the Universe?  Our group of 19 faculty members from around the nation were brought together to suggest how best to detect an extrasolar planet.  Today, the following planets seem possible for life:


It's taken all these years, but a number now approaching 1000 planets has been confirmed.  The progress on the Search for Extraterrestrial Intelligence, however, seems to be getting nowhere with minimal funding, and might take all of a billion years to finally detect alien life.

In the meantime, Ray Kurzweil has also been thinking big, and with his followers, a billion year plan for humanity is being generated.  I interacted with this group at the Singularity Institute's gathering in San Francisco two years ago.  Basically, the story goes like this.  Our Sun will expand and evaporate our oceans in a billion years, so if Mankind does not leave Planet Earth, that could be the end of intelligent life.

Some of this thinking exists in efforts like the Mars Project.  I was at one time somewhat supportive, for it was U.S. Senator Spark Matsunaga who advanced this concept in his book by the same name.  Arthur C. Clarke of "2001:  A Space Odyssey" fame, wrote the Foreword.  That was thirty years ago when I was working in his D.C. office, and Harvey Meyerson, whose desk was next door to mine, ghost wrote that book.  However, Senator Matsunaga was a peace advocate, and you'll note the subheading:  Journeys Beyond the Cold War.  He felt that if two competing powers worked together on a monumental enterprise, the foundation would be established for peace.

However, priorities change with time, and it makes no sense for American taxpayers to largely fund a $500 billion boondoggle to send astronauts to another planet today.  Kurzweil's billion year plan, of course, I'm sure won't hint at such a misadventure now.  Some day we will need to leave Planet Earth, but we have time.  Our species has only been around for 50,000 years or so.  Maybe we can begin to get serious about a real Billion Year Plan to save us in about, oh, 50,000 years.  That would still leave 9,999,950,000 years to get us to an extrasolar planet.

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In the West Pacific, Typhoon Jelawat remains on a path to cruise over Tokyo Sunday night, but only as a tropical storm.

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Wednesday, August 26, 2020

WE ARE NOT ALONE

From Worldometer,  COVID-19 new deaths:

           DAY USA   WORLD   Brazil      India   South Africa
June      9     1093    4732        1185      246         82
July       5       251    3572          535       421       173
             7       993    5504        1312       479       192
           12       380    4118          659       500       108
           15     1001    5760        1261       614       107
           19       412    4606          715       675         85
           22     1205    7128        1293     1120        572
           26       450    4307         556       715        114
Aug      1    1462     6429       1191       765        193
            3       467     4430         514       514        213
            5     1362     6292       1394       849        345
          10       534     4813         593     1013        198
          12     1504     6556       1242       835        130
          16       522     4525         582       961        162
          18     1358     6312        1365    1089        282
          21     1170     6062        1031      953        225
          22       974     5349          823      918        144
          23       430     4247          495      846          72
          24       510     4356          679      854        100
          25     1290     5856        1215    1066        149

Summary:  
  1. Well, back to an old normal, which is terrible.
  2. While the USA had a new cases total yesterday of 40,098, India's new cases rose to 66,873.
Looks like The Donald will soon be firing himself, as the DNC drew more viewers than the RNC on day one.  Streaming numbers were not available, but no doubt Trump must be orchestrating to do something spectacular on Thursday night to reverse this embarrassment.

I skipped the RNC  and last night happened to view an obscure 16-minute documentary entitled John was Trying to Contact Aliens, which was just released.  Rotten Tomatoes reviewers somehow found it earlier and provided a rating, giving it a 100% score!  I saw this production before viewing this result because, as some of you know, in the 1970's I spent some time at NASA's Ames Research Center on the Search for Extraterrestrial Intelligence.  Clearly, John Shepherd was totally out of his element and, alone, in attempting to communicate with ETs.  He tried for 30 years and did not succeed, but neither did Carl Sagan or the SETI Institute.  Is this a failure of science?  No, they were searching for the truth, and laying groundwork for others.  Someday, who knows.

Then I remembered reading a whole issue (33 pages) on WE ARE NOT ALONE in National Geographic.  However, I can't seem to find a way to send you to a link where you could read that article yourself.  So, this will become my focus of today.

  • 1896:  Nikola Tesla suggested that an extreme version of his wireless electrical transmission could be used to contact intelligent life on Mars.
  • Early 1900/s:  Guglielmo Marconi (right), Lord Kelvin and David Peck Todd also speculated on how radio could be used for communication, for Marconi thought he had picked up potential signals from Mars.
  • All this was taken quite seriously in those days, and from August 21-23 in 1924:
    • Mars entered an opposition closer to Earth than at any time in the century, not to be reached for another 80 years.
    • Radio silence day was promoted where there was no transmission for five minutes on the hour for 36 hours.
    • The U.S. Naval Observatory was linked to a dirigible tuned to a wavelength of 8-9 km to listen to and translate these possible Martian signals.  Well...nothing.  
  • Around 1950, in a casual conversation on this subject with Edward Teller and others walking to lunch, Enrico Fermi just remarked, But where is everybody?  This became known as the Fermi Paradox.
  • 1955:  John Kraus described a scan of the cosmos, and a parabolic reflector was built at Ohio State University, called the Big Ear. 
  • 1959:  a paper by Giuseppe Cocconi and Philip Morrison suggested use of the microwave spectrum  and initial targets.  This is the date SETI people use as Year One.  We are thus into Year 62, or looking at this from another grammatical viewpoint, the field is 61 years old.

  • 1971:  Bernard Oliver and Jack Billingham led a summer faculty workshop at the NASA Ames Research Center on Project Cyclops, with a price tag of $10 billion ($63 billion today)  for an array of reflectors.
  • 1976:  Project Orion at Ames, also led by Oliver and Billingham, to design a system to detect extraterrestrial signals.  I was part of this group and one of the few allowed to pursue other options.
  • 1977:  Ohio States's Big Ear recorded that famous WOW! signal from Sagittarius.  This remains as the most prominent "maybe" in history!
  • 1978:  Senator William Proxmire selected NASA's SETI program for one of his Golden Fleece Awards.
  • 1980:  Carl Sagan and others founded the U.S. Planetary Society for SETI studies, and, while on the staff of Senator Spark Matsunaga (who in 1986 published the Mars Project), I helped Sagan reach a compromise with Senator Proxmire for him not to not stand in the way of congressional funding for SETI, which was subsequently secured in 1982.
In short, the pathway to future SETI interaction:
  • Are we the only solar system in the Universe?  At the time of the 1976 Project Orion, the answer was, we don't know.  The group developed a standard micro-wave interferometry system, while, with Charles Townes, I suggested using direct observations using optical peaks of monochromatic light representing the lasing frequency of atmospheric gases like carbon dioxide and methane.  The advantage we offered was that, not only would we SEE the planet, but the wavelength would provide further evidence of possible life.  NASA set aside our concept because they only wanted to focus on microwave detection, and could not afford any optical frequency proposals.  Ohio State was deleted for a similar reason.  Mind you, microwave signals travel further in space, and in the distances contemplated, do make more sense.
  • When extrasolar planets are confirmed, find those optimal for possible life.
  • Detected life itself will almost surely only be microbiological, so a next step would be to determine how best to receive and translate alien signals (like in the movie Contact), that is, the small number that somehow involve with intelligence, something that already began with Drake in 1960 and the Allen Telescope Array in 2007.
  • Next, how to optimize two-way communication.  If life is as close as Proxima Centauri, it would take 8.4 years for us to send a response, then receive their answer.  Most of the promising sites are a lot further.  Sagittarius, for example, is 25,640 light years away, meaning a two-way communication time period of 51,280 years.  You know how long that is?  50,000 years ago, early versions of us were hunting wooly mammoths.
  • Then, actual space travel, like Star Trek.
So with that introduction, back to National Geographic:
  • The first extrasolar planet was found just about 20 years after our Project Orion, when in 1995 51 Pegasi b was discovered.  As of this moment, 4031 have been confirmed, mostly by the Kepler Space Telescope, which ran out of energy in 2018.  They actually scanned only a limited patch of 150,000 stars.  There could be 400 billion stars just in our Milky Way Galaxy.   This means that there are 100 billion stars where life could have originated, just in our galaxy.   Of course, there are around 100 billion galaxies, so imagine the odds of no life in all of the Universe.  These exoplanets were found using transit (that lucky accident when the planet passes across the star, where you can then detect a diminution of light) and indirect methods like wobbles.
  • Anyway, the first question has been answered.  Yes, there are other planets beyond our solar system.
  • Next, at a cost of $200 million, TESS (Transiting Exoplanet Survey Satellite), which was launched in 2018, and will observe an area 400 times larger than Kepler.  Also uses the rather crude transiting method.  There is a goal of 13,000 exoplanets in two years.  You might say, why bother with more detections when enough have already been found?  The answer is, if we know where the potential earth-like bodies are, we can focus on the most promising ones for possible life.
  • You might also ask, why don't we do this from our planet?  The Subaru Telescope on Mauna Kea does, but the atmosphere (only 40% as much as at sea level--so breathing can be a problem for some, like me) kind of gets in the way.  So a tricky optical trick has been devised, called SCExAO (you don't want to know what this stands for) to take the twinkle out of stars.
  • On hold is the $1.5 billion Thirty-Meter Telescope also on Mauna Kea, which as many know, has been stopped by local Hawaiians.  Has to do with something, apparently, more important than science.
  • But isn't the European Union already building their larger $1.5 billion 39-meter Extremely Large Telescope on top of the Cerro Armazones in Chile?  Now just known as the E-ELT, first light is planned for 2025.  It's become a national pride thing.  Plus, astronomers like being able to permanently live only an hour drive to the future observatory, as would occur in Hawaii.  You can imagine the trek up to the Atacama Desert.  All in all, now, there might not ever be a TMT, especially as there will be this larger one anyway, and the Space Telescope is getting closer to launch.
  • Which is a good a time as any to bring up the James Webb Space Telescope, which is only 6.5 meters.  Originally planned for launch in 2007 for half a billion dollars, the date is now late next year for....$10 billion, and counting.  A lot of money, you say?  When the U.S. Congress is debating about spending a next help package of from $1 trillion (or 1000 billion dollars) to $3 trillion, these are mere crumbs.
  • Infra-red telescopes are gaining credibility to actually see extraterrestrial life (anything from a forest with a sign to an advanced civilization able to capture energy from space).  Probably two decades away, the talk is about the Nancy Grace Roman Space Telescope, an infrared space observatory currently only pegged at $4 billion.  
  • Square Kilometre Array, an international (14 countries, but not U.S.) project to be build receivers in Australia and South Africa, headquartered at the University of Manchester's Jodrell Bank Observatory in Chesire, England, for initial observations in 2027, to collect the signals from thousands of small antennas to simulate a single giant radio telescope to answer the range of questions in cosmology. Cost, perhaps $2 billion.
  • The latest rumor is that NASA, which was prohibited to spend money on SETI from 1992, is getting back into the game.
  • You got to give the field a lot of credit for continuously justifying its existence with romance for outer space in light of wars, pandemics and other societal spending priorities.
  • On the non-Federal front, the SETI Institute continues.  They're involved with the Allen Telescope Array.  Jill Tarter retired in 2012, and Seth Shostak is still there.  Frank Drake, now 90 years old, is on the advisory board.
  • The current active field is dominated by Russian billionaire Yuri Milner:
    • Named for Yuri Gargarin.
    • Early investor in Facebook and Twitter.
    • Worth $4 billion.
    • Has committed $200 million to the Breakthrough initiatives.
    • Why?  He was born in 1961, when he says, SETI began.  Then again, if you look above in the timeline, nothing happened in 1961.  SETI began in 1959.  However, no one tell him that.  He might drop out.
    • Breakthrough Listen
      • $100 million over a decade, through the SETI Research Center at Cal Berkeley
      • Use radio wave observatories to listen to one million nearby stars and the centers of 100 galaxies
    • Breakthrough Message
      • Study the ethics of sending messages into deep space.
      • $1 million prize pool to design a digital message to be transmitted to an extraterrestrial civilization
    • Breakthrough Watch
      • Search for breakthrough biosignatures with the European Very Large Telescope in Chile
      • Identify earth-size exoplanets within 20 light years from Earth
    • Breakthrough Starshot
      • $100 million, co-funded by Mark Zuckerberg, but the actual project will end up costing up to $10 billion
      • Send a swarm of probes to Alpha Centauri  at 20% the speed of light (to get there in 20 years)
      • Flyby of Proxima Centauri b, an earth-sized exoplanet
    • Breakthrough Enceladus
      • Partner with NASA
      • Astrobiology space probe to explore for the possibility of life on Saturn's moon, Enceladus
The Blue Revolution needs a Yuri Milner.  Next, Calvin without Hobbes:


Finally, Pearl's sunbursts are still blooming:



My anthurium patch is doing well:


Oh my, Hurricane Laura is now up to 140 MPH as a Category 4, and appears to be taking a path almost exactly as Marcos, to make landfall at the Texas/Louisiana border in the vicinity of Beaumont and Lake Charles.  At least Houston and New Orleans will not be directly impacted:


Potential storm flooding:


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Sunday, May 19, 2013

KEPLER HAS DIED: BUT IT WAS NEVER NECESSARY ANYWAY

I have worked for NASA, and specifically at the Ames Research Center, on the Search for Extraterrestrial Intelligence (SETI).  In the 1970's one telling question was why bother with SETI when science had not yet confirmed even one planet outside our solar system.  So in 1976 NASA created Project Orion and brought together 19 faculty members from throughout the Nation to devise methods for detecting extrasolar planets.  Most the group worked together to design an interferometric system to indirectly find extrasolar planets.  I was given an opportunity to develop a direct method, called the Planetary Abstracting Trinterferometer (or PAT).  Click here for the full details.  I have thus followed this effort now for nearly 40 years.

I have been critical of the NASA extrasolar planetary search:

  1.  First, yes, sour grapes, but NASA ignored my proposal, deciding that the microwave band (wavelength from one mm to one meter--between infrared and radio waves) was the means by which aliens would communicate with us, and irrationally eliminated efforts at optical (visible spectrum, 390 to 700 nanometers, or violet to red) search frequencies:

for finding extrasolar planets.  They are unrelated.  Let me here editorialize that the choice of only measuring star wobbles or lucking out at seeing a diminution of light if a planet passes across a star (the Kepler method) was incredibly elementary.  The technique I advocated, through the guidance of  1974 Nobel Laureate Charles Townes (left), was a lot more sophisticated, based on planetary atmospheres lasing, resulting in discrete frequency peaks which could be detected and tracked in spite of the starlight.  Also, these frequencies would determine the atmospheric composition.  I had recently obtained a PhD, with my dissertation focused on tunable lasers, so I was well-programmed to explore this field.  I remain confounded that both NASA and the European Space Agency (ESA) continue to base their searches on wobbles and transits.


  2.  In 2006, the ESA sent COROT (above) into space to search for extrasolar planets.  It succeeded.  Thus, I wondered why three years later the USA had to spend so much money on another spacecraft to do the same thing.  True, COROT suffered a computer failure late last year, but it was at the end of it's lifespan anyway.

  3.   In the early 70's, the extrasolar planet total was maybe one, perhaps something around Barnard's Star. Peter van de Kamp kept analyzing wobbles since 1938 for a quarter century, but, embarrassingly, was proven wrong, and key in this investigation was George Gatewood, who was an advisor for Project Orion.  Today, however, let us declare victory, for astroscience has found almost a thousand extrasolar planets. Kepler (right), though, has reported alone discovering 2700 extrasolar planets, so something is awry here.  These findings were used by the Center for Astrophysics to determine that there are at least 17 billion Earth-sized exoplanets just in our own Milky Way.  Then, there are at least 100 billion galaxies, so there no doubt there are a lot of Earths in the Goldilocks Zone in our Universe.  But is there any extraterrestrial life?

  4.  Oh yes, I did not quite say, yet, but Kepler,   NASA's extrasolar planet seeking spacecraft, is crippled, and probaly will die.  Technically, two of four reaction wheels (left) seized. The spacecraft is located too far away to fix.  The budget was $600 million.  However, the spacecraft successfully completed its primary 3 1/2 year mission.  NASA has the Transiting Exoplanet Survey Satellite (or Tess) planned for 2017.  But why?  What is to gain from finding another few billion more Earth-sized planets?  Let the European Space Agency send out GAIA later this year, then maybe even Darwin, a Rube Goldberg-like space system, and possibly PLATO in 2018, all to find extrasolar planets.  The mission has been accomplished.  We now know there are trillions of planets out there.  Let's get on with the real Search for Extraterrestrial Intelligence.  Where is Jodie Foster anyway?


I've never meet her, but Foster portrayed Jill Tarter, the Bernard M. Oliver Chair for SETI at the SETI Institute in Palo Alto.  Give her a lot more money.  I did work with Barney Oliver on the Orion Project.  He was a commanding figure.

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Tuesday, November 24, 2009

CHAPTER 4: SEEKING THE LIGHT—SETI (Part 2)

The following continues the serialization of Chapter 4 on the Search for Extraterrestrial Intelligence (SETI) from SIMPLE SOLUTIONS for Humanity:


SETI in the 70’s


In 1971, Bernard Oliver of Hewlett-Packard and John Billingham of the National Aeronautics and Space Administration (NASA) Ames Research Center (ARC) conducted a summer workshop, and the group picked 1.42 GHz, the spectral line caused by interstellar hydrogen, and 1.66 GHz, caused by hydroxyl ions, called the “Water Hole,” as the ideal portion of space to conduct the search. For one, water symbolized life, and two, that band was relatively quiet. There is now that transitional link, for Book 1 featured a chapter reporting on hydrogen. Maybe there is something about hydrogen that goes beyond mere future sustainable utility.


In 1972, Oliver and Billingham authored a NASA study proposing an array of one thousand 100-meter telescopic dishes to pick up television and radio signals from neighboring stars. Project Cyclops was projected to cost $10 billion (which is $50 billion in 2009 dollars), but was never seriously considered. At this point in history, the U.S. Congress was not aware, or cared, that NASA was doing SETI work.


As an assistant professor of engineering, I then teamed with the resident futurist at the University of Hawaii, James Dator, and the National Aeronautics and Space Administration, on “Earth 2020: Visions for Our Children’s Children,” where in the summer of ‘74 we brought to Hawaii noted lecturers of national stature in topics related to Planet Earth, the environment and space, and weekly filled a two thousand seat auditorium. We also conducted a workshop for forty or so secondary and university faculty.


Having been thusly enlightened with this course, many of them went on to become principals, a university president, a provost, and elected public officials. Professor Dator later gained fame as Secretary General, then President, of the World Futures Study Federation. Identical summer workshops were held at San Jose State University and San Diego State University, with the advanced planning final report prepared by faculty from all three workshops. There was also a lot of cross-fertilization with the leaders of Project Cyclops. The information and curricula we generated became the standard instructional tools for a large number of teachers in Hawaii and California in the growing field of environmental consciousness. Remember, this was more than a third of a century ago.


Having thus been exposed to the SETI field, in 1976 I joined 19 other university faculty members from across the nation at NASA's Ames Research Center in Mountain View, California, on Project Orion, to detect an extrasolar planet (or exoplanet, used interchangeably), that is, a planet revolving around another star, spearheaded, of course, by Oliver and Billingham. The first question asked of Cornell Professor Frank Drake was: “Extraterrestrial intelligence? How do you know there are even other planets outside our solar system?” So the faculty group was tasked to design a system to accomplish this feat. Why me? Well, I had an idea on how to do this, plus I long harbored visions that the cure for cancer and the solution to world peace might be beaming unto Planet Earth from advanced civilizations.


Originally, in the mid 1800’s, stars were classified by hotness (Class I for white and blue, down to Class IV for red and Class V). Early in the 1900’s, the Harvard classification was adopted, ranking stars by luminosity—O, B, A, F, G, K, and M—Oh Be A Fine Girl, Kiss Me.


F and G type suns seem best suited for planets. Our Sun is in the latter category, and the guess is that there is a 7% chance for a solar system, while the former is 1.3 to 1.5 solar masses, with a 10% chance of planets. Planets do not form in binary star systems, and have a higher probability of creation in galactic arms where heavy elements are located. There is a 20-30% chance towards the external portion of a galaxy, where we are located.


How does a planet form? Well, more and more, astronomers are seeing disks surrounding stars. Very simply, the dust agglomerates into planets. Thus, first find a planet, any planet. Then, find planets where life is possible. These sites should be:


o older than 3 billion years;

o with a star smaller than 1.5 times our Sun mass;

o having a stable location between galaxy spiral arms; and

o in a solar system which is singular, that is, without a binary star.


While most of the team went on to design an interferometric system to indirectly do the job, a few of us were allowed to pursue other directions. Indirect means to measure something else. That is, as you can’t see that extrasolar planet, the starlight being so intense relative to the reflection from the planet, measure the orbit wobble of the star, with the pattern mathematically being fitted for possible planets. Direct means somehow block out the starlight and see that extrasolar planet, or, better yet, actually measure and track something, anything, from the planet itself. I was the only one to take this latter option, for I like to see what I’m doing, and the optical spectrum was my choice.


That same previously mentioned (in Chapter 2) Charles Townes, who had won the Nobel Prize for the laser, and who will later be mentioned in Chapter 10 for being awarded the 2005 Templeton Prize (generally given to a noted scientist who has religious predilections), happened to just arrive at the University of California Berkeley from the Massachusetts Institute Technology in 1976, and had published a paper speculating that planetary atmospheres lased (that is, flashed a well-defined color like in a typical laser, representing the gaseous molecule undergoing this phenomenon).


As an aside, there is something karmic coupling the afterlife with SETI, as Science Digest, in its October 1985 issue on “The 20 Greatest Unanswered Questions of Science,” featured on its front cover, English-born and Princeton professor Freeman Dyson, the 2002 Templeton Prize awardee. Dyson was asked the question, “Are We Alone in the Universe?” He responded, “engaging in mathematical calculations on the probability of intelligent life elsewhere in the universe is not a worthwhile exercise. The universe may be crawling with life. The answer is: Wait and see.” Dyson had previously worked on a different Orion Project, but that was around 1960, and it had to do with using nuclear pulse propulsion for space-flight.


Anyway, returning to the discussion, a Jupiter-size planet cannot be seen revolving around a typical Sun-size star tens of light years away because the starlight is so much brighter by 5 to 10 orders of magnitude (meaning 10 to that power, or in the inverse, the light from an extrasolar planet is from 1/100,000 to 1/10,000,000,000, or one ten billionth that of the star). However, if the planetary atmosphere lased, then these spiked discrete frequencies, first, might well be detectable because you would know exactly which monochromatic colors to check (the lasing frequency of those gases that would be found in planetary atmospheres), thus, also, this would accordingly give the atmospheric composition. Conversely, if no lasing is detected, then that planet has no atmosphere, and can summarily be deleted from future consideration regarding the potential for harboring life. My PhD dissertation experience, which included building a tunable laser before you could purchase one, provided this spark of imagination. I went to see Professor Townes, and he graciously provided encouragement.


My final report to NASA was called “To See the Impossible Dream: the Planetary Abstracting Trinterferometer (note the acronym, PAT),” with a Man from La Mancha symbol on the cover. I of course quoted Miguel de Cervantes:


To Man, the Don Quixote of the universe

May he succeed in his impossible dream.


At first I thought David Black, the NASA coordinator, reacted to my paper as being some kind of joke, but I now understand that optical searches were not company policy. That is, as it makes a lot more technical sense to measure the microwave spectrum for actual alien signals, NASA seemed wedded to focusing only on that particular technology, even for detecting extrasolar planets. Why microwave? These signals can travel further in space (less degradation) than optical ones.


Anyway, Black surmised that the Hubble Telescope would be soon to fly and find such exoplanets. Hubble was actually deployed 14 years later, and only in 2008 (32 years later) detected a planet orbiting a star. This telescope was serviced one final time later in 2009 for operation until 2013, when the James Webb Space Telescope is expected to be launched. Without an orbit reboost, the Hubble could plunge to Earth sometime soon after 2019. In any case, the prevailing convention then, as now, was to explore and receive the microwave band, so anything resembling optical searches did not meet the accepted requirements.


Either way, there is a timing concern, as, more and more, new commercial communications satellites will cloud the radio spectrum, especially in the range of the most promising detection channels. Thus, SETI will soon need to move into outer space if the focus is to continue traditional interferometry measurement techniques on Earth.


Two final bits about the ‘70’s, in 1975, the U.S. Congress published “The Possibility of Intelligent Life Elsewhere in the Universe.” In 1978, Senator William Proxmire (D-Wisconsin) selected NASA’s SETI program for one of his famous Golden Fleece Awards. The following year found me in Washington, D.C. as U.S. Senator Spark Matsunaga’s Special Assistant on Energy. Little did I know that while helping to solve our second energy crisis, one of my more interesting tasks would be related to SETI.

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At one point today, the Dow Jones Industrials dipped more than 100 points. However, the DJI ended down only 17 at 10,434, while world markets were also mostly lower. Gold continued to set world records, jumping $9/toz to $1169. Crude oil is now around $77/barrel.

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Tropical Typhoon Nida, at 115 MPH, was at first heading in the general direction of Guam, located 200 miles away, but now looks to move towards southern Japan, perhaps in a week. There is a tropical depression now affecting Mindanao (southern Philippine island). Tropical Cyclone Bongani, at 40 MPH, is moving west, just north of Madagascar.

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Formerly part of Romania, Moldova was incorporated into the Soviet Union at the close of World War II. Although independent from the USSR since 1991, Russian forces have remained on Moldovan territory east of the Dniester River supporting the Slavic majority population, mostly Ukrainians and Russians, who have proclaimed a "Transnistria" republic. One of the poorest nations in Europe, Moldova became the first former Soviet state to elect a Communist as its president in 2001.

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