论文标题

核激子的相干X射线光控制与Zeptsond相位稳定性

Coherent x-ray-optical control of nuclear excitons with zeptosecond phase-stability

论文作者

Heeg, K. P., Kaldun, A., Strohm, C., Ott, C., Subramanian, R., Lentrodt, D., Haber, J., Wille, H. -C., Goerttler, S., Rüffer, Rudolf, Keitel, C. H., Röhlsberger, R., Pfeifer, T., Evers, J.

论文摘要

量子动力学的相干控制是大量基本研究和应用的关键。在可见或更长的波长域中,近谐振的光场已成为控制电子动力学的主要工具。最近,证明了极端硫酸群范围内的相干控制,并且在几秒钟范围内,施加的光场的正时稳定性。在硬X射线能量下,Mössbauer核具有狭窄的核共振,这些共振的光谱是研究物质的磁,结构和动力学特性的广泛工具。已经表明,使用各种控制技术可以显着提高Mössbauer光谱的功率和范围。然而,使用近共振的X射线场对原子核的相干控制仍然是一个开放的挑战,这也是由于在几个Zeptosecond范围内对X射线光的极端稳定性要求。在这里,我们演示了这种控制,并使用两个X射线脉冲的相对相位来切换刺激的发射和增强的相干激发之间的核动力学。为此,我们建议并实施一种方法,将现代X射线设施传递的单个脉冲塑造为可调双脉冲,并在几个Zeptosecond级别具有所需的稳定性。我们的结果解锁了对核的相干光学控制,并为核ramsey光谱和类似自旋回波的技术铺平了道路,这不仅提供了推进核量子光学器件的关键概念,而且还提供了可能的X射线时钟和频率标准的基本要素。从长期的角度来看,我们设想对核能外部动力学的时间分辨研究,这是Mössbauer科学的长期开放挑战。

Coherent control of quantum dynamics is key to a multitude of fundamental studies and applications alike. In the visible or longer-wavelength domains, near-resonant light fields have become the primary tool to control electron dynamics. Recently, coherent control in the extreme-ultraviolet range was demonstrated, with timing stability of the applied light fields in the few-attosecond range. At hard x-ray energies, Mössbauer nuclei feature narrow nuclear resonances, and spectroscopy of these resonances is a widespread tool to study magnetic, structural and dynamical properties of matter. It has been shown that the power and scope of Mössbauer spectroscopy can be significantly advanced using various control techniques. However, the coherent control of atomic nuclei using near-resonant x-ray fields remains an open challenge, also because of the extreme stability requirements on the x-ray light in the few-zeptosecond range. Here, we demonstrate such control, and use the relative phase of two x-ray pulses to switch the nuclear dynamics between stimulated emission and enhanced coherent excitation. For this, we suggest and implement a method to shape single pulses delivered by modern x-ray facilities into tunable double-pulses, with the desired stability on the few-zeptosecond level. Our results unlock coherent optical control for nuclei, and pave the way for nuclear Ramsey spectroscopy and spin-echo-like techniques, which not only provide key concepts for advancing nuclear quantum optics, but also essential ingredients for possible x-ray clocks and frequency standards. As a long-term perspective, we envision time-resolved studies of nuclear out-of-equilibrium dynamics, which is a long-standing open challenge in Mössbauer science.

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