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Trapped Ion Oscillation Frequencies as Sensors for Spectroscopy

机译:陷获离子振荡频率作为光谱传感器

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摘要

The oscillation frequencies of charged particles in a Penning trap can serve as sensors for spectroscopy when additional field components are introduced to the magnetic and electric fields used for confinement. The presence of so-called “magnetic bottles” and specific electric anharmonicities creates calculable energy-dependences of the oscillation frequencies in the radiofrequency domain which may be used to detect the absorption or emission of photons both in the microwave and optical frequency domains. The precise electronic measurement of these oscillation frequencies therefore represents an optical sensor for spectroscopy. We discuss possible applications for precision laser and microwave spectroscopy and their role in the determination of magnetic moments and excited state life-times. Also, the trap-assisted measurement of radiative nuclear de-excitations in the X-ray domain is discussed. This way, the different applications range over more than 12 orders of magnitude in the detectable photon energies, from below μeV in the microwave domain to beyond MeV in the X-ray domain.
机译:当将额外的场分量引入用于限制的磁场和电场时,潘宁阱中带电粒子的振荡频率可以用作光谱传感器。所谓的“磁性瓶”和特定的电气非谐波的存在会在射频域中产生可计算的能量依赖性的振荡频率,可用于检测微波和光频域中光子的吸收或发射。因此,这些振荡频率的精确电子测量代表了一种用于光谱学的光学传感器。我们讨论了精密激光和微波光谱学的可能应用及其在确定磁矩和激发态寿命中的作用。此外,还讨论了在X射线域中陷阱辅助的辐射核去激发的测量。这样,在可检测的光子能量中,不同的应用范围超过了12个数量级,从微波域中的μeV以下到X射线域中的MeV以上。

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