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Cryogenic radio-frequency resonator for surface ion traps

机译:表面离子陷阱的低温射频谐振器

摘要

The present subject matter provides technical solutions for the technical problems facing cryogenic ion traps by providing a cryogenic radio-frequency (RF) resonator that is compact, monolithic, modular, and impedance-matched to a cryogenic ion trap. The cryogenic RF resonator described herein is power-efficient, properly impedance-matched to the RF source, has a stable gain profile, and is compatible with a low temperature and ultra-high vacuum environment. In some examples, the gain profile is selected so that the cryogenic RF resonator acts as a cryogenic RF amplifier. This cryogenic RF resonator improves the performance of ion traps by reducing or minimizing the heat load and reducing or minimizing the unwanted noise that may erroneously drive trapped ions. These features of the present subject matter improve the performance of atomic clocks and mass spectrometers, and especially improve the performance of trapped ion quantum computers.
机译:本主题通过提供紧凑的无线电频率(RF)谐振器,为低温,单片,模块化和阻抗与低温离子阱匹配来提供技术问题的技术解决方案。 本文所述的低温RF谐振器是功率有效的,适当地阻抗与RF源相匹配,具有稳定的增益曲线,并且与低温和超高真空环境兼容。 在一些示例中,选择增益轮廓,使得低温RF谐振器用作低温RF放大器。 这种低温RF谐振器通过减少或最小化热负荷并减少或最小化可能错误地驱动捕获离子的不需要的噪音来提高离子阱的性能。 本主题的这些特征提高了原子钟和质谱仪的性能,特别是提高了被捕获的离子量子计算机的性能。

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