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Reflections of Absolute Zero
ScienceNOW Daily News ^ | 9 April 2007 | Phil Berardelli

Posted on 04/09/2007 9:46:53 PM PDT by neverdem

Super cool.
Researchers have developed a technique to cool this dime-sized mirror (small circle suspended in the center of metal ring) to within one degree of absolute zero.

Credit: Christopher Wipf/MIT

If you want to really see quantum mechanics in action, you've got to turn the temperature down so low that even atoms stop moving. Physicists have come close to achieving this "absolute zero" state by using precision-tuned lasers, but the technique has only allowed researchers to freeze small groups of atoms at a time. Now members of an international team say they have managed to cool a dime-sized mirror to within one degree of absolute zero, the lowest laser-induced freeze yet achieved with a visible object.

One of the greatest enigmas in physics is how matter can be governed by the four basic forces of nature--electromagnetism, which governs light, heat and electricity; the strong and weak nuclear forces, which bind atoms together; and gravity--and still follow the rules of quantum mechanics, which operate only at the subatomic level. In other words, scientists want to know how solid objects keep from flying apart when their atoms are also influenced by the chaotic nature of quantum physics. The major research obstacle has been that natural forces overwhelm quantum effects. The only way to cancel those forces entirely is to cool an atom down to absolute zero (-237 degrees Celsius), where quantum forces apply exclusively.

Scientists have been able to get within a billionth of a degree or so of this state at the atomic scale using several techniques, including laser cooling. Likened to controlling a bowling ball by hitting it with ping-pong balls, laser cooling involves firing pulses of light at a specific frequency that exactly matches an atom's motions. The tuned pulses dampen those motions, and eventually the atom loses all of its energy that isn't generated by quantum effects. The problem has been that scientists have not been able to use lasers to supercool anything bigger than a few atoms.

In an upcoming issue of Physical Review Letters, a team of physicists involved in the Laser Interferometer Gravitational-Wave Observatory (LIGO)--which is located in facilities in Washington State and Louisiana--reports that they have cooled a 1-gram mirror to about 0.8 degrees above absolute zero by combining two laser-cooling techniques. The first, called optical trapping, maintains the mirror in a precise position, while the second, called optical damping, cools it. There's still a long way to go before quantum effects can be observed, cautions lead researcher Nergis Mavalvala of the Massachusetts Institute of Technology in Cambridge, but "the most important thing is that we have found a technique that could allow us to get large objects to ultimately show their quantum behavior for the first time."

Other scientists have achieved temperatures much closer to absolute zero by laser-cooling atoms, and have gotten closer to that target with solid objects using other methods, says physicist Christopher Monroe of the University of Michigan in Ann Arbor. The difference here, he says, is that the laser-cooling used by the LIGO team has the potential of hitting "much lower limits" than anything else so far. He notes, however, that the team's specialized mirror resembles an atom more than a solid object in some respects because of its precise interaction with light.

If the effort is successful, Mavalvala says, it will also lead to much more sensitive instruments for LIGO, which is attempting to detect elusive phenomena called gravity waves. Predicted by Einstein but not yet observed, the waves are thought to be emitted by the most violent events in the universe, such as black hole collisions.

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TOPICS: Culture/Society; Extended News; News/Current Events; Technical
KEYWORDS: absolutezero; physics; science; stringtheory

1 posted on 04/09/2007 9:46:53 PM PDT by neverdem
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To: neverdem

Chilled mirror dew point sensor?


2 posted on 04/09/2007 10:07:15 PM PDT by null and void (To Marines, male bonding happens in Boot Camp, to Democrats, it happens at a Gay Pride parade...)
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To: SunkenCiv; blam
Seems like you might be interested.

L

3 posted on 04/09/2007 10:10:26 PM PDT by Lurker (Comparing 'moderate' islam to 'extremist' islam is like comparing small pox to plague.)
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To: neverdem

Maybe we could cool Antarctica to near absolute zero and save the polar bears.

By the way, Hillary is as close as a human being has ever gotten to absolute zero.


4 posted on 04/09/2007 10:11:23 PM PDT by doug from upland (Stopping Hillary should be a FreeRepublic Manhattan Project)
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To: neverdem

“the most important thing is that we have found a technique that could allow us to get large objects to ultimately show their quantum behavior for the first time.”

Don’t hear that everyday.


5 posted on 04/09/2007 10:13:00 PM PDT by Unknowing (Now is the time for all good men to come to the aid of their country.)
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To: Unknowing

Didn’t Gamow write a book about that?


6 posted on 04/09/2007 10:17:26 PM PDT by null and void (To Marines, male bonding happens in Boot Camp, to Democrats, it happens at a Gay Pride parade...)
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To: null and void

Ylem if I know.


7 posted on 04/09/2007 10:19:37 PM PDT by Unknowing (Now is the time for all good men to come to the aid of their country.)
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To: neverdem

Someone correct me if I a wrong but isn’t absolute zero impossible because it would require a perfectly closed system and that is impossible to acheive anywhere in the universe, because there will always be some energy transfer?


8 posted on 04/09/2007 10:22:26 PM PDT by LukeL (Never let the enemy pick the battle site. (Gen. George S. Patton))
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To: Lurker
"Seems like you might be interested."

Yup, thanks. Son is a physicist and he worked on high temperature superconductors years ago with Paul Chu

9 posted on 04/09/2007 10:27:29 PM PDT by blam
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To: Lurker; neverdem; AdmSmith; bvw; callisto; ckilmer; dandelion; FairOpinion; ganeshpuri89; ...
Dare ya to stick your tongue on it. Thanks for the ping and topic.

10 posted on 04/09/2007 10:27:59 PM PDT by SunkenCiv (I last updated my profile on Monday, April 2, 2007. https://secure.freerepublic.com/donate/)
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To: neverdem

Cool!


11 posted on 04/10/2007 12:44:41 AM PDT by DeweyCA
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To: neverdem; All
If you want to really see quantum mechanics in action, you've got to turn the temperature down so low that even atoms stop moving.

Hell, then put a liberal's brain under surveillance. Not much movement goin' on there.

12 posted on 04/10/2007 1:53:02 AM PDT by Recovering_Democrat (I am SO glad to no longer be associated with the party of Dependence on Government!)
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To: neverdem

When are they going to sell a reverse-microwave for cooling down your food?


13 posted on 04/10/2007 4:06:17 AM PDT by bkepley
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To: bkepley

We have those now; they’re called refrigerators.


14 posted on 04/10/2007 6:28:55 AM PDT by EarthBound (Ex Deo,gratia. Ex astris,scientia (Duncan Hunter in 2008! http://www.gohunter08.com))
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To: EarthBound

Absolute zero is about -273.15 Celcius, not minus 237 Celcius.


15 posted on 04/10/2007 11:55:48 AM PDT by dr huer
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To: LukeL
isn’t absolute zero impossible

The definition of temperature is controlling. Define it right and you can achieve it.

16 posted on 04/10/2007 12:00:29 PM PDT by RightWhale (3 May '07 3:14 PM)
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To: dr huer

Allrighty. I just call it zero kelvins.


17 posted on 04/10/2007 12:03:36 PM PDT by EarthBound (Ex Deo,gratia. Ex astris,scientia (Duncan Hunter in 2008! http://www.gohunter08.com))
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To: EarthBound

=We have those now; they’re called refrigerators.

The problem with that is I’ve always been told not to put hot food in the refrigerator.


18 posted on 04/10/2007 3:36:55 PM PDT by bkepley
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