Physicists move closer to the quantum limit

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  • juicylinks
    So Fucking Banned
    • Apr 2001
    • 122992

    #1

    Physicists move closer to the quantum limit



    A new experiment in the US has come close to detecting quantum effects in a macroscopic object. Keith Schwab and colleagues from the National Security Agency (NSA) working at the University of Maryland have measured the vibrations of a tiny nanoelectromechanical arm to probe the limits at which quantum behaviour breaks down and classical physics takes over. Although the experiment was not quite sensitive enough to test the uncertainty principle, it has come closer to doing so than previous attempts (M D LaHaye et al. 2004 Science 304 74).

    The uncertainty principle states that we cannot simultaneously know both the position and velocity of a particle with complete certainty. The principle is used to describe the motion of particles at the atomic level, but has thus far not been observed in the behaviour of macroscopic objects. Such behaviour is described by classical physics.

    To find out whether or not the uncertainty principle extends up to the macroscopic world, Schwab and colleagues studied the motion of a vibrating mechanical arm made from silicon nitride. At just 8 microns (8x10-6m) long, the arm is tiny by everyday standards but still macroscopic (having the mass equivalent to 1012 hydrogen atoms).

    The researchers positioned the arm about 600 nanometres away from a single-electron transistor - which acts as a motion detector - and coupled the two together via a capacitor. They then applied a voltage to make the arm vibrate and cooled the system down to a few millikelvin. Cooling the system to such low temperatures reduced thermal vibrations close to the point where just "zero-point" quantum fluctuations remain. This zero-point motion results from the uncertainty principle, which prevents the arm from remaining completely at rest.

    As the arm moved towards the detector, and then away from it, the amount of current flowing through the transistor changed. By measuring this current, the physicists were able to measure the displacement of the arm with a sensitivity that is only about a factor of 4.3 larger than the amplitude of zero-point fluctuations.

    The NSA physicists now plan to increase the sensitivity of the detector and further reduce thermal vibrations in the arm. They also hope to extend their study to larger objects. "These experiments address a deep mystery in physics: where does the quantum world stop and the classical world begin?" Schwab told PhysicsWeb. "Success at manipulating the quantum state of a mechanical device would suggest that there is no boundary and encourage us to pursue even larger objects."

    Schwab says his team would like to exploit the system for quantum computing applications.
  • modelgigtalent
    Confirmed User
    • May 2003
    • 2208

    #2


    Web marketing - video editing - color correcting and more. ICQ -165829688

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    • Illicit
      wtf ?
      • Dec 2003
      • 11895

      #3
      wow ! you dont say...
      Insert Sig Here

      Comment

      • juicylinks
        So Fucking Banned
        • Apr 2001
        • 122992

        #4
        Originally posted by modelgigtalent
        baaaa baaaaa

        Comment

        • juicylinks
          So Fucking Banned
          • Apr 2001
          • 122992

          #5
          Originally posted by ajpiii
          wow ! you dont say...

          Comment

          • Elli
            Reach for those stars!
            • Apr 2003
            • 17991

            #6
            Do you have a link?
            email: [email protected]

            Comment

            • juicylinks
              So Fucking Banned
              • Apr 2001
              • 122992

              #7
              Originally posted by Elli
              Do you have a link?
              http://physicsweb.org/article/news/8/4/1

              Check out the archives some interesting stuff

              Comment

              • Giorgio_Xo
                Confirmed User
                • Mar 2003
                • 4263

                #8
                Tax dollars well spent. That shit is awesome.
                Make Levees, Not War

                Comment

                • foreverjason
                  Confirmed User
                  • Mar 2003
                  • 1452

                  #9
                  the future is upon us.

                  Comment

                  • spentrent
                    Confirmed User
                    • Feb 2004
                    • 876

                    #10
                    <i>Where Does the Weirdness Go?</i> by David Lindley is a great layman's guide to quantum mechanics.

                    Comment

                    • pimplink
                      Confirmed User
                      • Jun 2001
                      • 9535

                      #11
                      nice stuff but can it help us or it's just some kind
                      of their discoveries?

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                      • spentrent
                        Confirmed User
                        • Feb 2004
                        • 876

                        #12
                        Originally posted by pimplink
                        nice stuff but can it help us or it's just some kind
                        of their discoveries?
                        All scientific research helps us. There's no such thing as "pragmatic research."

                        Comment

                        • StuartD
                          Sofa King Band
                          • Jul 2002
                          • 29903

                          #13
                          Originally posted by pimplink
                          nice stuff but can it help us or it's just some kind
                          of their discoveries?
                          Didn't you ever see Quantum Leap? That guy saved people all the time, so it's gotta be good.
                          This is me on facebook
                          This is me on twitter

                          Comment

                          • Wilber
                            Confirmed User
                            • May 2001
                            • 1295

                            #14
                            Quantum mechanics broke down in super string theory. That's old news.
                            Sig NOT for sale

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                            • Greg B
                              So Fucking Banned
                              • Jul 2001
                              • 7014

                              #15
                              Originally posted by juicylinks


                              http://physicsweb.org/article/news/8/4/1

                              Check out the archives some interesting stuff

                              Comment

                              • reynold
                                Too lazy to set a custom title
                                • Oct 2002
                                • 51271

                                #16
                                Another cool breakthrough!

                                Comment

                                • spentrent
                                  Confirmed User
                                  • Feb 2004
                                  • 876

                                  #17
                                  Originally posted by Wilber
                                  Quantum mechanics broke down in super string theory. That's old news.
                                  I wish I was one of the 3 guys who understands string theory.

                                  Comment

                                  • mijoon
                                    Confirmed User
                                    • Apr 2002
                                    • 610

                                    #18
                                    Originally posted by juicylinks


                                    A new experiment in the US has come close to detecting quantum effects in a macroscopic object. Keith Schwab and colleagues from the National Security Agency (NSA) working at the University of Maryland have measured the vibrations of a tiny nanoelectromechanical arm to probe the limits at which quantum behaviour breaks down and classical physics takes over. Although the experiment was not quite sensitive enough to test the uncertainty principle, it has come closer to doing so than previous attempts (M D LaHaye et al. 2004 Science 304 74).

                                    The uncertainty principle states that we cannot simultaneously know both the position and velocity of a particle with complete certainty. The principle is used to describe the motion of particles at the atomic level, but has thus far not been observed in the behaviour of macroscopic objects. Such behaviour is described by classical physics.

                                    To find out whether or not the uncertainty principle extends up to the macroscopic world, Schwab and colleagues studied the motion of a vibrating mechanical arm made from silicon nitride. At just 8 microns (8x10-6m) long, the arm is tiny by everyday standards but still macroscopic (having the mass equivalent to 1012 hydrogen atoms).

                                    The researchers positioned the arm about 600 nanometres away from a single-electron transistor - which acts as a motion detector - and coupled the two together via a capacitor. They then applied a voltage to make the arm vibrate and cooled the system down to a few millikelvin. Cooling the system to such low temperatures reduced thermal vibrations close to the point where just "zero-point" quantum fluctuations remain. This zero-point motion results from the uncertainty principle, which prevents the arm from remaining completely at rest.

                                    As the arm moved towards the detector, and then away from it, the amount of current flowing through the transistor changed. By measuring this current, the physicists were able to measure the displacement of the arm with a sensitivity that is only about a factor of 4.3 larger than the amplitude of zero-point fluctuations.

                                    The NSA physicists now plan to increase the sensitivity of the detector and further reduce thermal vibrations in the arm. They also hope to extend their study to larger objects. "These experiments address a deep mystery in physics: where does the quantum world stop and the classical world begin?" Schwab told PhysicsWeb. "Success at manipulating the quantum state of a mechanical device would suggest that there is no boundary and encourage us to pursue even larger objects."

                                    Schwab says his team would like to exploit the system for quantum computing applications.

                                    I decohere , therefore I am .

                                    Comment

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