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Information transport and transport-induced entanglement in open fermion chains

Nava, Andrea ; Artiaco, Claudia; Gefen, Yuval; Gornyi, Igor 1,2; Tsitsishvili, Mikheil; Zazunov, Alex; Egger, Reinhold
1 Institut für Theorie der Kondensierten Materie (TKM), Karlsruher Institut für Technologie (KIT)
2 Institut für QuantenMaterialien und Technologien (IQMT), Karlsruher Institut für Technologie (KIT)

Abstract:

Understanding the entanglement dynamics in quantum many-body systems under steady-state transport conditions is an actively pursued challenging topic. Hydrodynamic equations, akin to transport equations for charge or heat, would be of great interest but face severe challenges because of the inherent nonlocality of entanglement and the difficulty of identifying conservation laws. We show that progress is facilitated by using information as a key quantity related to—but distinct from—entanglement. Employing the recently developed “information lattice” framework, we formulate general continuity equations governing the flow of spatially and scale-resolved information currents in nonequilibrium open quantum systems. To illustrate our theory, we consider noninteracting fermion chains coupled to dissipative reservoirs, using Lindblad master equations. By relating the information lattice to a noise lattice constructed from particle-number fluctuations, we show that information is experimentally accessible via noise measurements. Similarly, local information currents can be obtained by measuring particle currents, on-site occupations, and covariances of particle numbers and/or particle currents. ... mehr


Verlagsausgabe §
DOI: 10.5445/IR/1000196786
Veröffentlicht am 04.09.2026
Cover der Publikation
Zugehörige Institution(en) am KIT Institut für QuantenMaterialien und Technologien (IQMT)
Institut für Theorie der Kondensierten Materie (TKM)
Publikationstyp Zeitschriftenaufsatz
Publikationsmonat/-jahr 08.2026
Sprache Englisch
Identifikator ISSN: 2643-1564
KITopen-ID: 1000196786
HGF-Programm 47.11.03 (POF IV, LK 01) Quantum Nanoscience
Erschienen in Physical Review Research
Verlag American Physical Society (APS)
Seiten Art.Nr: 033273
Vorab online veröffentlicht am 18.08.2026
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