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Optical Frequency Synthesis From a Cryogenic Sapphire Oscillator Using a Fiber-Based Frequency Comb.

, , , , , , , , , , , , and . IEEE Trans. Instrumentation and Measurement, 56 (2): 632-636 (2007)

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Stabilization and frequency measurement of the I2-stabilized Nd: YAG laser., , , , , , and . IEEE Trans. Instrumentation and Measurement, 48 (2): 583-586 (1999)Improvements to the Volume Measurement of 28Si Spheres to Determine the Avogadro Constant., , , , and . IEEE Trans. Instrumentation and Measurement, 64 (6): 1650-1656 (2015)Results from international comparisons at the BIPM providing a world-wide reference network of 127I2 stabilized frequency-doubled Nd: YAG lasers., , , , , , , , , and 2 other author(s). IEEE Trans. Instrumentation and Measurement, 52 (2): 236-239 (2003)Portable I2-stabilized Nd: YAG laser for international comparisons., , , , , , , and . IEEE Trans. Instrumentation and Measurement, 50 (2): 486-489 (2001)Precise Frequency Comparison System Using Bidirectional Optical Amplifiers., , , , , and . IEEE Trans. Instrumentation and Measurement, 59 (3): 631-640 (2010)Frequency Measurement Capability of a Fiber-Based Frequency Comb at 633 nm., , , , , , , , , and . IEEE Trans. Instrumentation and Measurement, 58 (4): 1234-1240 (2009)Stability degradation factors evaluated by phase noise measurement in an optical-microwave frequency link using an optical frequency comb., , , , , and . IEEE Trans. Instrumentation and Measurement, 54 (2): 763-766 (2005)Evaluation of Fiber Noise Induced in Ultrastable Environments., , , , , and . IEEE Trans. Instrumentation and Measurement, 68 (6): 2246-2252 (2019)Frequency comparison of 127I2-stabilized Nd: YAG lasers., , , , , and . IEEE Trans. Instrumentation and Measurement, 48 (2): 532-536 (1999)Comparison of independent optical frequency measurements using a portable iodine-stabilized Nd: YAG laser., , , , , , and . IEEE Trans. Instrumentation and Measurement, 52 (2): 240-244 (2003)