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    • 3. 发明申请
    • COLD ATOM MICRO PRIMARY STANDARD
    • 冷门微型主要标准
    • US20100033256A1
    • 2010-02-11
    • US12484899
    • 2009-06-15
    • Jennifer S. StrableyDaniel W. YoungnerLisa M. LustThomas OhnsteinBernard Fritz
    • Jennifer S. StrableyDaniel W. YoungnerLisa M. LustThomas OhnsteinBernard Fritz
    • H03L7/26H03B17/00
    • G04F5/14
    • An atomic clock having a physics package that includes a vacuum chamber cavity that holds atoms of Rb-87 under high vacuum conditions, an optical bench having a single laser light source, a local oscillator, a plurality of magnetic field coils, an antenna, at least one photo-detector and integrated control electronics. The single laser light source has a fold-retro-reflected design to create three retro-reflected optical beams that cross at 90° angles relative to one another in the vacuum chamber cavity. This design allows the single laser light source to make the required six trapping beams needed to trap and cool the atoms of Rb-87. The foregoing design makes possible atomic clocks having reduced size and power consumption and capable of maintaining an ultra-high vacuum without active pumping.
    • 具有物理封装的原子钟包括在高真空条件下保存Rb-87原子的真空室腔,具有单个激光光源,本地振荡器,多个磁场线圈,天线的光学台 至少一个光电检测器和集成控制电子元件。 单个激光光源具有折射反射设计,以在真空室腔中产生相对于彼此以90度角交叉的三个反射光束。 该设计允许单个激光光源产生所需的六个俘获光束,以捕获和冷却Rb-87的原子。 上述设计使得可能的原子钟具有减小的尺寸和功率消耗,并且能够在没有主动泵送的情况下保持超高真空。
    • 4. 发明授权
    • Cold atom micro primary standard
    • 冷原子微小标准
    • US07944317B2
    • 2011-05-17
    • US12484899
    • 2009-06-15
    • Jennifer S. StrableyDaniel W. YoungnerLisa M. LustThomas OhnsteinBernard Fritz
    • Jennifer S. StrableyDaniel W. YoungnerLisa M. LustThomas OhnsteinBernard Fritz
    • H03L7/26
    • G04F5/14
    • An atomic clock having a physics package that includes a vacuum chamber cavity that holds atoms of Rb-87 under high vacuum conditions, an optical bench having a single laser light source, a local oscillator, a plurality of magnetic field coils, an antenna, at least one photo-detector and integrated control electronics. The single laser light source has a fold-retro-reflected design to create three retro-reflected optical beams that cross at 90° angles relative to one another in the vacuum chamber cavity. This design allows the single laser light source to make the required six trapping beams needed to trap and cool the atoms of Rb-87. The foregoing design makes possible atomic clocks having reduced size and power consumption and capable of maintaining an ultra-high vacuum without active pumping.
    • 具有物理封装的原子钟包括在高真空条件下保存Rb-87原子的真空室腔,具有单个激光光源,本地振荡器,多个磁场线圈,天线的光学台 至少一个光电检测器和集成控制电子元件。 单个激光光源具有折射反射设计,以在真空室腔中产生相对于彼此以90度角交叉的三个反射光束。 该设计允许单个激光光源产生所需的六个俘获光束,以捕获和冷却Rb-87的原子。 上述设计使得可能的原子钟具有减小的尺寸和功率消耗,并且能够在没有主动泵送的情况下保持超高真空。
    • 9. 发明授权
    • Increasing the scale factor of gas laser based gyroscopes with an external gain saturation beam
    • 用外部增益饱和光束增加气体激光陀螺仪的比例因子
    • US08422022B2
    • 2013-04-16
    • US12851178
    • 2010-08-05
    • Kenneth SalitMary SalitJennifer S. StrableyTerry D. Stark
    • Kenneth SalitMary SalitJennifer S. StrableyTerry D. Stark
    • G01C19/66
    • G01C19/66H01S3/0835H01S3/10053H01S3/102H01S3/2222
    • A ring laser gyroscope that includes a cavity containing a gain medium, a first plurality of reflective surfaces coupled to the cavity, a medium exciter operable to excite the gain medium, and a saturation beam source operable to emit a saturation beam. The first plurality of reflective surfaces includes a first reflective surface, a second reflective surface, and a third reflective surface. The first, second, and third reflective surfaces are positioned to reflect light along a path defined in the cavity between the plurality of reflective surfaces. The excited gain medium induces first and second laser fields within the cavity. The emitted saturation beam intersects with the first and second laser fields at a first interaction region of the cavity. The saturation beam interacts with the gain medium to reduce the gain of the first and second laser fields at a first range of frequencies.
    • 环形激光陀螺仪,其包括包含增益介质的空腔,耦合到空腔的第一多个反射表面,可操作以激励增益介质的介质激励器和可操作以发射饱和光束的饱和光束源。 第一多个反射表面包括第一反射表面,第二反射表面和第三反射表面。 第一,第二和第三反射表面被定位成沿着限定在多个反射表面之间的空腔中的路径反射光。 激发的增益介质在空腔内引起第一和第二激光场。 发射的饱和光束在空腔的第一相互作用区域处与第一和第二激光场相交。 饱和光束与增益介质相互作用以在第一频率范围内减小第一和第二激光场的增益。