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Subpicotesla scalar atomic magnetometer with a microfabricated cell

机译:具有微细电池的Subpicotesla标量原子磁力计

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摘要

We demonstrated a scalar atomic magnetometer using a microfabricated Cs vapor cell. The atomic spin precession is driven by an amplitude-modulated circularly-polarized pump laser resonant on the D1 transition of Cs atoms and detected by an off-resonant linearly-polarized probe laser using a balanced polarimeter setup. Under a magnetic field with amplitude in the Earth's magnetic field range, the magnetometer in the gradiometer mode can reach sensitivities below 150fT/Hz, which shows that the magnetometer by itself can achieve sub-100fT/Hz sensitivities. In addition to its high sensitivity, the magnetometer has a bandwidth close to 1 kHz due to the broad magnetic resonance inside the small vapor cell. Our experiment suggests the feasibility of a portable low-power and high-performance magnetometer which can be operated in the Earth's magnetic field. Such a device will greatly reduce the restrictions on the operating environment and expand the range of applications for atomic magnetometers, such as detection of nuclear magnetic resonance in low magnetic fields.
机译:我们演示了使用超微型Cs蒸气电池的标量原子磁力计。原子自旋进动由在Cs原子的D1跃迁上谐振的调幅圆偏振泵浦激光器驱动,并由使用平衡偏振计设置的非谐振线性偏振探针激光器检测到。在磁场幅度在地球磁场范围内的磁场下,梯度计模式的磁力计可以达到低于150fT / Hz的灵敏度,这表明磁力计本身可以达到100fT / Hz以下的灵敏度。除了其高灵敏度外,由于小型蒸汽电池内部的广泛磁共振,磁力计的带宽接近1 kHz。我们的实验表明了一种便携式低功耗高性能磁力计的可行性,该磁力计可以在地球磁场中运行。这种设备将大大减少对操作环境的限制,并扩大原子磁力计的应用范围,例如在低磁场中检测核磁共振。

著录项

  • 来源
    《Journal of Applied Physics》 |2019年第12期|124503.1-124503.4|共4页
  • 作者单位

    Geometrics Inc San Jose CA 95131 USA;

    Texas Instruments Inc Greenock PA16 0EQ Scotland|Univ Strathclyde Glasgow G11 XQ Lanark Scotland;

    Texas Instruments Inc Greenock PA16 0EQ Scotland|Nu Nano Ltd Bristol BS2 0XJ Avon England;

    Texas Instruments Inc Santa Clara CA 95051 USA|Rockley Photon Inc San Jose CA 95110 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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