Mesoscopic transport via one-dimensional chain with Localized two-body loss
- Date
- July 23 (Wed) at 10:00 - 11:30, 2025 (JST)
- Speaker
-
- Kensuke Kakimoto (Ph.D. Student, Faculty of Science and Engineering, School of Fundamental Science and Engineering, Waseda University)
- Language
- English
- Host
- Yuta Sekino
Abstract:
Mesoscopic transport has long served as a powerful probe into the quantum behavior of matter; however, the role of dissipation in such systems remains unresolved. In recent years, quantum simulations of mesoscopic systems with ultracold atomic gases have made significant progress, particularly through the use of optical tweezers to induce local dissipation via atom loss. In this talk, we discuss a two-terminal mesoscopic system in which two-body loss occurs locally at the center of a one-dimensional chain, modeling a dissipative quantum point contact. To analyze this setup, we employ the Keldysh Green’s function formalism in combination with a noise-field representation of Lindblad dynamics. Our analysis reveals that the dissipation strength depends on the occupation number of the central dissipative site, leading to a weaker suppression of particle current in the weakly dissipative regime compared to the case of one-body loss.
Reference
- Kensuke Kakimoto and Shun Uchino, Quantum Point Contact with Local Two-body Loss (2025), arXiv:2505.24391 (2025), doi: 10.48550/arXiv.2505.24391, arXiv: 2505.24391
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