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通过奇异点实现共振隧穿的激光控制

Laser Control of Resonance Tunneling via an Exceptional Point.

作者信息

Ben-Asher Anael, Šimsa Daniel, Uhlířová Tereza, Šindelka Milan, Moiseyev Nimrod

机构信息

Schulich Faculty of Chemistry, Technion-Israel Institute of Technology, Haifa 32000, Israel.

Department of Radiation and Chemical Physics, Institute of Physics of the Czech Academy of Sciences, Na Slovance 1999/2, Prague 8 182 21, Czech Republic.

出版信息

Phys Rev Lett. 2020 Jun 26;124(25):253202. doi: 10.1103/PhysRevLett.124.253202.

Abstract

According to the familiar Breit-Wigner formula, tunneling through a potential barrier is strongly enhanced when the energy of the projectile is equal to the resonance energy. Here we show how a weak continuous wave laser can qualitatively change the character of resonance tunneling, and enforce a sudden and total suppression of the transmission by inducing an exceptional point (EP, special non-Hermitian degeneracy). Our findings are relevant not only for laser control of transmission in the resonance tunneling diodes, but also in the context of electron scattering through any type of metastable (e.g., autoionization, Auger, intermolecular Coulombic decay) atomic or molecular states, and even in the case of transmission of light or sound waves in active systems with gain and loss.

摘要

根据常见的布赖特-维格纳公式,当射弹的能量等于共振能量时,通过势垒的隧穿会显著增强。在此我们展示了一个弱连续波激光如何定性地改变共振隧穿的特性,并通过诱导一个例外点(EP,特殊的非厄米简并)来强制实现透射的突然且完全抑制。我们的发现不仅与共振隧穿二极管中透射的激光控制相关,而且在电子通过任何类型的亚稳态(例如自电离、俄歇、分子间库仑衰变)原子或分子态散射的背景下也相关,甚至在有增益和损耗的有源系统中光波或声波的透射情况中也相关。

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