论文标题

使用相干形状的自由电子迈向原子分辨率的量子测量

Towards atomic-resolution quantum measurements with coherently-shaped free electrons

论文作者

Ruimy, Ron, Gorlach, Alexey, Mechel, Chen, Rivera, Nicholas, Kaminer, Ido

论文摘要

自由电子为原子尺度空间分辨率探测材料特性提供了强大的工具。超快电子显微镜的最新进展使得可以使用激光脉冲来操纵游离电子波形。如果可以将电子探针的空间分辨率与激光脉冲在量子系统中探测相干现象的能力相结合,那将是非常重要的。为此,我们提出了一种新型技术,该技术利用激光脉冲相干形状的自由电子来测量材料中的量子相干性。开发了材料中电子量相互作用的量子理论,我们展示了激光形电子的能量光谱如何使测量量子块 - 球状状态和变形时间(T2)。最后,我们介绍了这种形状的电子如何检测和量化多个Qubits的超负式。我们的方案可以在超快传输电子显微镜(UTEM)中实施,为在原子级分辨率下的量子系统状态的全面表征开辟了道路。

Free electrons provide a powerful tool to probe material properties at atomic-scale spatial resolution. Recent advances in ultrafast electron microscopy enable the manipulation of free electron wavefunctions using laser pulses. It would be of great importance if one could combine the spatial resolution of electron probes with the ability of laser pulses to probe coherent phenomena in quantum systems. To this end, we propose a novel technique that leverages free electrons that are coherently-shaped by laser pulses to measure quantum coherence in materials. Developing a quantum theory of electron-qubit interactions in materials, we show how the energy spectrum of laser-shaped electrons enables measuring the qubit Block-sphere state and decoherence time (T2). Finally, we present how such shaped electrons can detect and quantify superradiance from multiple qubits. Our scheme could be implemented in an ultrafast transmission electron microscope (UTEM), opening the way towards the full characterization of the state of quantum systems at atomic-scale resolution.

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