磁强计
微波食品加热
钻石
光电子学
量子传感器
材料科学
磁场
带宽(计算)
物理
光学
量子
量子信息
电信
量子力学
复合材料
量子网络
计算机科学
作者
Yuji Hatano,Jae-Won Shin,Daisuke Nishitani,Haruki Iwatsuka,Y. MASUYAMA,Hiroki Sugiyama,Makoto Ishii,Shinobu Onoda,Takeshi Ohshima,Keigo Arai,Takayuki Iwasaki,Mutsuko Hatano
摘要
Energy conservation and battery life extension are key challenges for the next-generation hybrid electric vehicles. In particular, the temperature and electric currents in a storage battery need to be monitored simultaneously with ∼1 kHz signal bandwidth for optimum battery usage. Here we introduce a centimeter-scale portable quantum sensor head, consisting of a diamond substrate hosting an ensemble of nitrogen-vacancy (NV) color centers with a density of ∼3 × 1017 cm−3. One diamond surface is attached to a multi-mode fiber for simultaneous optical excitation and readout of the NV centers, while the other diamond surface is attached to a coplanar microwave guide for NV spin ground-state mixing. Signal bandwidth of 1 kHz was realized through time-domain multiplexing of the two-tone microwave frequency modulation at 20 kHz. Two microwave frequencies were locked to the two resonance points that were determined from the optically detected magnetic resonance spectrum. From the mean and the difference of the deviation from the two locked frequencies, the temperature and magnetic field were obtained simultaneously and independently, with sensitivities of 3.5 nT/Hz1/2 and 1.3 mK/Hz1/2, respectively. We also showed that our sensor reached a minimum detectable magnetic field of 5 pT by accumulating signals for over 10 000 s.
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