齐纳二极管
量子隧道
凝聚态物理
物理
厄米矩阵
量子力学
电压
晶体管
作者
Lange Zhao,Shulin Wang,Chengzhi Qin,Bing Wang,Ye Han,Weiwei Liu,Stefano Longhi,Peixiang Lu
出处
期刊:Advanced photonics
[SPIE - International Society for Optical Engineering]
日期:2025-04-11
卷期号:7 (03)
标识
DOI:10.1117/1.ap.7.3.036002
摘要
Landau-Zener (LZ) tunneling, i.e., the nonadiabatic level transition under strong parameter driving, is a fundamental concept in modern quantum mechanics. With the advent of non-Hermitian physics, research interest has been paid to the LZ tunneling involving level dissipations. However, experimental demonstrations of such an interesting non-Hermitian LZ problem remain yet elusive. By harnessing a synthetic temporal lattice using a fiber-loop circuit, we report on the first real-time measurement of non-Hermitian LZ tunneling in a dissipative two-band lattice model. An innovative approach based on mode interference is developed to measure the transient band occupancies, providing a powerful tool to explore the non-Hermitian LZ tunneling dynamics in non-orthogonal eigenmodes. We find that the loss does not change the final LZ tunneling probability but can highly affect the tunneling process by modifying the typical band occupancies oscillation behaviors. We initiate exploring intriguing LZ physics and measurements beyond the standard Hermitian paradigm, with potential applications in coherent quantum control and quantum technologies.
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