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Radio Waves Cool Cantilever

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BOULDER, Colo., Sept. 17, 2007 -- Physicists have used radio waves to dampen the motion of a thin silicon cantilever containing more than a quadrillion atoms, a cooling technique that has the potential to demonstrate quantum behavior in a macroscopic object using smaller and simpler equipment and could lead to the creation of very sensitive detectors.NIST physicists used radio waves to cool this silicon microcantilever, the narrow orange strip across the middle of this colorized micrograph. The cantilever, created by ion etching through a silicon wafer, lies parallel to a silicon radio-frequency electrode. (Image: J....Read full article

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    Published: September 2007
    Glossary
    cantilever
    A projecting beam or other structure supported only at one end.
    laser cooling
    Laser cooling is a technique used to reduce the temperature of a material or a collection of atoms or molecules by using laser light. It is based on the principle of selective absorption and emission of photons by atoms or molecules. In laser cooling, specially tuned laser beams are directed at the material or atoms. When these atoms absorb photons from the laser light, they gain momentum in the direction of the laser beam due to the momentum carried by the photons. However, according to...
    nano
    An SI prefix meaning one billionth (10-9). Nano can also be used to indicate the study of atoms, molecules and other structures and particles on the nanometer scale. Nano-optics (also referred to as nanophotonics), for example, is the study of how light and light-matter interactions behave on the nanometer scale. See nanophotonics.
    photonics
    The technology of generating and harnessing light and other forms of radiant energy whose quantum unit is the photon. The science includes light emission, transmission, deflection, amplification and detection by optical components and instruments, lasers and other light sources, fiber optics, electro-optical instrumentation, related hardware and electronics, and sophisticated systems. The range of applications of photonics extends from energy generation to detection to communications and...
    quantum
    The term quantum refers to the fundamental unit or discrete amount of a physical quantity involved in interactions at the atomic and subatomic scales. It originates from quantum theory, a branch of physics that emerged in the early 20th century to explain phenomena observed on very small scales, where classical physics fails to provide accurate explanations. In the context of quantum theory, several key concepts are associated with the term quantum: Quantum mechanics: This is the branch of...
    atomscantilevercoolingcryogenicindustriallaser coolingmicrocantilevermolecularnanoNews & FeaturesNISToscillatorphotonicsPing-PongquantumRFRF coolingSensors & DetectorssiliconLasers

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