论文标题
探测由钻石中的氮散布中心介导的热镁电流
Probing thermal magnon current mediated by coherent magnon via nitrogen-vacancy centers in diamond
论文作者
论文摘要
目前,由于其在计算设备和热电转换技术方面的潜力,对热激发的木蛋白进行了深入研究。我们使用量子传感器在温度梯度下报告了在磁性绝缘体YTTrium铁石榴石中传播的热镁电流的检测:与钻石中的氮无效(NV)中心相关的电子旋转。观察到热镁电流是在梁形散装钻石中托有NV旋转的改良的Rabi振荡频率,该旋转与连贯的磁蛋白在长距离内共同传播。另外,使用纳米座原子,在非谐振NV激发条件下观察到NV自旋松弛率的改变。通过NV旋转状态探测由连贯木元素介导的热镁电流的演示是创建设备平台杂交旋转热量量货币和自旋量子的基础。
Currently, thermally excited magnons are being intensively investigated owing to their potential in computing devices and thermoelectric conversion technologies. We report the detection of thermal magnon current propagating in a magnetic insulator yttrium iron garnet under a temperature gradient using a quantum sensor: electron spins associated with nitrogen-vacancy (NV) centers in diamond. Thermal magnon current was observed as modified Rabi oscillation frequencies of NV spins hosted in a beam-shaped bulk diamond that resonantly coupled with coherent magnon propagating over a long distance. Additionally, using a nanodiamond, alteration in NV spin relaxation rates depending on the applied temperature gradient were observed under a non-resonant NV excitation condition. The demonstration of probing thermal magnon current mediated by coherent magnon via NV spin states serves as a basis for creating a device platform hybridizing spin caloritronics and spin qubits.