Burshtein Amir, Kuzmin Roman, Manucharyan Vladimir E, Goldstein Moshe
Raymond and Beverly Sackler School of Physics and Astronomy, Tel Aviv University, Tel Aviv 6997801, Israel.
Department of Physics, University of Maryland, College Park, Maryland 20742, USA.
Phys Rev Lett. 2021 Apr 2;126(13):137701. doi: 10.1103/PhysRevLett.126.137701.
Instantons, spacetime-localized quantum field tunneling events, are ubiquitous in correlated condensed matter and high-energy systems. However, their direct observation through collisions with conventional particles has not been considered possible. We show how recent advances in circuit quantum electrodynamics, specifically, the realization of galvanic coupling of a transmon qubit to a high-impedance transmission line, allows the observation of inelastic collisions of single microwave photons with instantons (phase slips). We develop a formalism for calculating the photon-instanton cross section, which should be useful in other quantum field theoretical contexts. In particular, we show that the inelastic scattering probability can significantly exceed the effect of conventional Josephson quartic anharmonicity and reach order-unity values.
瞬子,即时空局域化的量子场隧穿事件,在关联凝聚态物质和高能系统中无处不在。然而,通过与常规粒子碰撞来直接观测瞬子被认为是不可能的。我们展示了电路量子电动力学的最新进展,具体而言,将一个跨导量子比特与高阻抗传输线实现电耦合,如何使得观测单个微波光子与瞬子(相位滑移)的非弹性碰撞成为可能。我们发展了一种用于计算光子 - 瞬子截面的形式体系,这在其他量子场论背景下应该会很有用。特别地,我们表明非弹性散射概率可以显著超过传统约瑟夫森四次非谐性的效应,并达到量级为 1 的值。