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Coupling of ultrathin tapered fibers with high-Q microsphere resonators at cryogenic temperatures and observation of phase-shift transition from undercoupling to overcoupling

机译:低温下超薄锥形光纤与高Q微球谐振器的耦合以及从欠耦合到过耦合的相移过渡的观察

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摘要

We cooled ultrathin tapered fibers to cryogenic temperatures and controllably coupled them with high-Q microsphere resonators at a wavelength close to the optical transition of diamond nitrogen vacancy centers. The 310-nm-diameter tapered fibers were stably nanopositioned close to the microspheres with a positioning stability of approximately 10 nm over a temperature range of 7-28 K. A cavity-induced phase shift was observed in this temperature range, demonstrating a discrete transition from undercoupling to overcoupling.
机译:我们将超细锥形纤维冷却至低温,并与高Q微球谐振器可控地耦合,其波长接近金刚石氮空位中心的光学跃迁。将直径310 nm的锥形纤维稳定地纳米放置在靠近微球的位置,在7-28 K的温度范围内具有约10 nm的定位稳定性。在此温度范围内观察到了空腔引起的相移,表明存在离散的跃迁从耦合不足到耦合过度。

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