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Shot-noise-limited optical Faraday polarimetry with enhanced laser noise cancelling

机译:散粒噪声限制的法拉第光学偏振法,具有增强的激光噪声消除功能

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摘要

We present a shot-noise-limited measurement of optical Faraday rotations with sub-ten-nanoradian angular sensitivity. This extremely high sensitivity is achieved by using electronic laser noise cancelling and phase sensitive detection. Specially, an electronic laser noise canceller with a common mode rejection ratio of over 100 dB was designed and built for enhanced laser noise cancelling. By measuring the Faraday rotation of ambient air, we demonstrate an angular sensitivity of up to 9.0×10−9 rad/Hz, which is limited only by the shot-noise of the photocurrent of the detector. To date, this is the highest angular sensitivity ever reported for Faraday polarimeters in the absence of cavity enhancement. The measured Verdet constant of ambient air, 1.93(3)×10−9rad/(G cm) at 633 nm wavelength, agrees extremely well with the earlier experiments using high finesse optical cavities. Further, we demonstrate the applications of this sensitive technique in materials science by measuring the Faraday effect of an ultrathin iron film.
机译:我们提出光学法拉第旋转的散粒噪声限制测量值,其误差小于十纳米。通过使用电子激光噪声消除和相位敏感检测可以实现这种极高的灵敏度。特别是,设计并制造了一种具有超过100 dB的共模抑制比的电子激光噪声消除器,以增强激光噪声消除能力。通过测量环境空气的法拉第旋转,我们证明了高达9.0×10 −9 rad / Hz的角灵敏度,该角灵敏度仅受探测器光电流散粒噪声的限制。迄今为止,这是有史以来法拉第旋光仪在没有增强腔的情况下获得的最高角度灵敏度。在633 nm波长处测得的环境空气Verdet常数为1.93(3)×10 −9 rad /(G cm),与早期使用高精细光学腔的实验非常吻合。此外,我们通过测量超薄铁膜的法拉第效应证明了这种敏感技术在材料科学中的应用。

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    《Journal of Applied Physics》 |2014年第10期|1-6|共6页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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