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Interferometric frequency measurements of an iodine stabilized Nd: YAG laser.

, , , and . IEEE Trans. Instrumentation and Measurement, 48 (2): 600-603 (1999)

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Interferometric frequency measurements of an iodine stabilized Nd: YAG laser., , , and . IEEE Trans. Instrumentation and Measurement, 48 (2): 600-603 (1999)Development of optical frequency standards based upon the 2 S1/2-2D5/2 transition in 88 Sr+ and 87Sr+., , , , and . IEEE Trans. Instrumentation and Measurement, 50 (2): 543-547 (2001)Observation of a Sub-10-Hz Linewidth 88Sr+ 2S1/2-2D5/2 Clock Transition at 674 nm., , , and . IEEE Trans. Instrumentation and Measurement, 56 (2): 226-229 (2007)An optical frequency standard based on the electric octupole transition in 171Yb+., , , , , , , and . IEEE Trans. Instrumentation and Measurement, 54 (2): 759-762 (2005)Progress toward an optical frequency chain at NPL., , , and . IEEE Trans. Instrumentation and Measurement, 48 (2): 578-582 (1999)Angle sensitive pixels in CMOS for lensless 3D imaging., , and . CICC, page 371-374. IEEE, (2009)Reducing electrical power dissipation in computational imaging systems through special-purpose optics., , , , , and . ISCAS, page 1-4. IEEE, (2017)Anthropic correction of information estimates., , and . ITW, page 152-155. IEEE, (2009)Special-purpose optics to reduce power dissipation in computational sensing and imaging systems., and . IEEE SENSORS, page 1-3. IEEE, (2017)Miniature lensless computational infrared imager., , , , and . IMSE, page 1-4. Society for Imaging Science and Technology, (2016)