Generation of heat pulses in mesoscopic conductors using light fields

Fuente: arXiv
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Autores principales: Portugal, Pedro, Tuovinen, Riku, Flindt, Christian
Formato: Preprint
Publicado: 2026
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author Portugal, Pedro
Tuovinen, Riku
Flindt, Christian
author_facet Portugal, Pedro
Tuovinen, Riku
Flindt, Christian
contents We propose to generate heat pulses in mesoscopic conductors using light fields. In contrast to single-electron excitations such as levitons, which are created by accurate voltage drives, our approach relies on modulating the temperature of an electronic reservoir. To this end, we show that the interactions with a light field can induce a controllable time-dependent temperature in an electrode. The temperature modulations generate charge-neutral heat pulses that can be emitted into a mesoscopic conductor and detected in the outputs. We illustrate our approach by evaluating the time-dependent currents and their fluctuations using a tight-binding model of two electronic reservoirs connected by a quantum point contact. Our work establishes a route towards on-demand caloritronics, where energy rather than charge carries quantum information, and it paves the way for probing time-resolved heat transport and quantum coherence in thermally driven conductors.
format Preprint
id arxiv_https___arxiv_org_abs_2605_02322
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Generation of heat pulses in mesoscopic conductors using light fields
Portugal, Pedro
Tuovinen, Riku
Flindt, Christian
Mesoscale and Nanoscale Physics
Quantum Physics
We propose to generate heat pulses in mesoscopic conductors using light fields. In contrast to single-electron excitations such as levitons, which are created by accurate voltage drives, our approach relies on modulating the temperature of an electronic reservoir. To this end, we show that the interactions with a light field can induce a controllable time-dependent temperature in an electrode. The temperature modulations generate charge-neutral heat pulses that can be emitted into a mesoscopic conductor and detected in the outputs. We illustrate our approach by evaluating the time-dependent currents and their fluctuations using a tight-binding model of two electronic reservoirs connected by a quantum point contact. Our work establishes a route towards on-demand caloritronics, where energy rather than charge carries quantum information, and it paves the way for probing time-resolved heat transport and quantum coherence in thermally driven conductors.
title Generation of heat pulses in mesoscopic conductors using light fields
topic Mesoscale and Nanoscale Physics
Quantum Physics
url https://arxiv.org/abs/2605.02322