Spontaneous photon emission by shaped quantum electron wavepackets and the QED origin of bunched electron beam superradiance.

Bin Zhang, Reuven Ianconescu, Aharon Friedman, Jacob Scheuer, Mikhail Tokman, Yiming Pan, Avraham Gover
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Abstract

It has been shown that the spontaneous emission rate of photons by free electrons, unlike stimulated emission, is independent of the shape or modulation of the quantum electron wavefunction (QEW). Nevertheless, here we show that the quantum state of the emitted photons is non-classical and does depend on the QEW shape. This non-classicality originates from the shape dependent off-diagonal terms of the photon density matrix. This is manifested in the Wigner distribution function and would be observable experimentally through homodyne detection techniques as a squeezing effect. Considering a scheme of electrons interaction with a single microcavity mode, we present a QED formulation of spontaneous emission by multiple modulated QEWs through a build-up process. Our findings indicate that in the case of a density modulated QEWs beam, the phase of the off-diagonal terms of the photon state emitted by the modulated QEWs is the harbinger of bunched beam superradiance, where the spontaneous emission is proportional toNe2. This observation offers a potential for enhancement of other quantum electron interactions with quantum systems by a modulated QEWs beam carrying coherence and quantum properties of the modulation.

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成形量子电子波包的自发光子发射和成束电子束超辐照度的 QED 起源。
研究表明,与受激发射不同,自由电子的光子自发发射率与量子电子波函数(QEW)的形状或调制无关。然而,我们在这里证明,发射光子的量子态是非经典的,确实取决于 QEW 的形状。这种非经典性源于光子密度矩阵中与形状相关的非对角项。这体现在维格纳分布函数中,并可通过同调探测技术在实验中观察到挤压效应。考虑到电子与单个微腔模式的相互作用方案,我们提出了一个由多个调制 QEW 通过堆积过程自发发射的 QED 公式。我们的研究结果表明,在密度调制 QEWs 光束的情况下,调制 QEWs 发射的光子态的非对角项的相位是束状光束超辐照度的先兆,其中自发辐射与 N_e^2 成正比。这一观察结果为通过调制 QEWs 光束增强其他量子电子与量子系统的相互作用提供了可能性,调制 QEWs 光束具有相干性和量子特性。
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