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APS -Annual Meeting of the APS Four Corners Section- Event - Optical Atomic Clocks - New Clocks for New Physics

机译:APS-APS四角分会年会-活动-光学原子钟-新物理钟

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Given the extreme precision with which we can measure time, time (together with its inverse, frequency) plays a unique role in the International System (SI) of units and in a myriad of applications including tests of our most fundamental physical principles. The highest performing clocks are now those based on lasers whose frequency is stabilized to ultra-narrow optical transitions excited in samples of trapped atoms. This talk will explain the basic physics behind these revolutionary timepieces and review the state-of-the-art of the field. Included will be descriptions of experiments at NIST and JILA in Boulder, CO, where scientists are comparing the frequencies of optical clocks at the millihertz level, an uncertainty equivalent to one second in the age of the Universe. The talk will conclude with speculation about possible new experiments (e. g., geodesy via Relativity) made possible by frequency metrology at the 18$^{th}$ digit.
机译:鉴于我们可以测量时间的极高精度,时间(连同其倒数,频率)在国际单位制(SI)和无数应用(包括测试最基本的物理原理)中都发挥着独特的作用。现在,性能最高的时钟是基于激光器的时钟,其频率稳定到被捕获的原子样本中激发的超窄光学跃迁。本演讲将解释这些革命性时计背后的基本物理原理,并回顾该领域的最新技术。其中将描述在美国科罗拉多州博尔德市的NIST和JILA进行的实验说明,科学家们正在比较毫秒级的光钟频率,这一不确定性相当于宇宙时代的一秒。演讲将以推测通过可能的新实验(例如,通过相对论进行大地测量)作为结论,该新实验是通过频率计量在18位数字获得的。

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