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Laser Stability Improved by an Order of Magnitude

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BOULDER, Colo., Sept. 12, 2012 — A laser so stable that its frequency varies by no more than two parts in 10,000 trillion represents an approach for constructing high-quality optical cavities that improve prior designs by more than an order of magnitude. The laser was developed and tested by an international collaboration at NIST/JILA and a group at Physikalisch-Technische Bundesanstalt (PTB), NIST's counterpart in Germany. It will accelerate progress in developing optical clocks that operate at frequencies more than 10,000 times higher than the approximately 9.2-GHz microwaves used as the current worldwide time...Read full article

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    Published: September 2012
    Glossary
    atomic clock
    An atomic clock is a highly precise timekeeping device that uses the vibrations or oscillations of atoms as a reference for measuring time. The most common type of atomic clock uses the vibrations of atoms, typically cesium or rubidium atoms, to define the length of a second. The principle behind atomic clocks is based on the fundamental properties of atoms, which oscillate at extremely stable and predictable frequencies. The primary concept employed in atomic clocks is the phenomenon of...
    cryostat
    A device used to maintain near-absolute temperatures for experimental procedures.
    maser
    An acronym for microwave amplification by stimulated emission of radiation. Predecessor to the laser, the maser or 'microwave laser' was the first device to produce coherent electromagnetic waves, and was done at microwave frequencies through amplification by stimulated emission. A laser (light amplification by stimulated emission of radiation) is a maser that works over a broader range of higher frequency photons in the ultraviolet and visible portion of the electromagnetic spectrum.
    all-silicon interferometerAmericasatomic clockatomic physicsBasic ScienceCoatingsColoradoCommunicationscryostatEuropefiber opticsFritz RiehleGermanyinterferometersJILAJun YeLasersLisheng ChenMarkus AspelmeyermaserMichael MartinmirrorsNature PhotonicsNISToptical cavityoptical coatingOpticsPhysical Measurement LaboratoryPhysikalisch-Technische BundesanstaltPTBQuantum Physics Div.Research & Technologyspacetelecom wavelengthTest & Measurementthermal fluctuationsULEultrastable laserUwe SterrVienna

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