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Reaching the ultimate energy resolution of a quantum detector

机译:达到量子探测器的最终能量分辨率

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Quantum calorimetry, the thermal measurement of quanta, is a method of choice for ultrasensitive radiation detection ranging from microwaves to gamma rays. The fundamental temperature fluctuations of the calorimeter, dictated by the coupling of it to the heat bath, set the ultimate lower bound of its energy resolution. Here we reach this limit of fundamental equilibrium fluctuations of temperature in a nanoscale electron calorimeter, exchanging energy with the phonon bath at very low temperatures. The approach allows noninvasive measurement of energy transport in superconducting quantum circuits in the microwave regime with high efficiency, opening the way, for instance, to observe quantum jumps, detecting their energy to tackle central questions in quantum thermodynamics.
机译:量子量热法,Quanta的热量测量是一种从微波到伽马射线的超细辐射检测的选择方法。热量计的基本温度波动,通过将其耦合到热浴,设定了能量分辨率的最终下限。在这里,我们在纳米级电子热量表中达到温度的基本平衡波动极限,在非常低的温度下与声子浴更换能量。该方法允许在微波制度中具有高效率的超导量子电路中的能量传输的非侵入性测量,例如,以观察量子跳跃,检测它们在量子热力学中的中央问题来解决它们的能量。

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