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Controllable effects of quantum fluctuations on spin free-induction decay at room temperature

机译:室温下量子涨落对自旋自由感应衰减的可控影响

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摘要

Fluctuations of local fields cause decoherence of quantum objects. Usually at high temperatures, thermal noises are much stronger than quantum fluctuations unless the thermal effects are suppressed by certain techniques such as spin echo. Here we report the discovery of strong quantum-fluctuation effects of nuclear spin baths on free-induction decay of single electron spins in solids at room temperature. We find that the competition between the quantum and thermal fluctuations is controllable by an external magnetic field. These findings are based on Ramsey interference measurement of single nitrogen-vacancy center spins in diamond and numerical simulation of the decoherence, which are in excellent agreement.
机译:局部场的波动导致量子对象的退相干。通常在高温下,热噪声要比量子波动大得多,除非通过某些技术(例如自旋回波)抑制了热效应。在这里,我们报道了在室温下,核自旋浴对固体中单电子自旋的自由感应衰变具有很强的量子涨落作用的发现。我们发现,量子和热涨落之间的竞争是可以通过外部磁场控制的。这些发现是基于钻石中单个氮原子空位中心自旋的Ramsey干涉测量和退相干的数值模拟,两者非常吻合。

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