Roadmap on Quantum Thermodynamics

Fuente: arXiv
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Auteurs principaux: Campbell, Steve, D'Amico, Irene, Ciampini, Mario A., Anders, Janet, Ares, Natalia, Artini, Simone, Auffèves, Alexia, Oftelie, Lindsay Bassman, Bettmann, Laetitia P., Bonança, Marcus V. S., Busch, Thomas, Campisi, Michele, Cavalcante, Moallison F., Correa, Luis A., Cuestas, Eloisa, Dag, Ceren B., Dago, Salambô, Deffner, Sebastian, Del Campo, Adolfo, Deutschmann-Olek, Andreas, Donadi, Sandro, Doucet, Emery, Elouard, Cyril, Ensslin, Klaus, Erker, Paul, Fabbri, Nicole, Fedele, Federico, Fiusa, Guilherme, Fogarty, Thomás, Folk, Joshua, Guarnieri, Giacomo, Hegde, Abhaya S., Hernández-Gómez, Santiago, Hu, Chang-Kang, Iemini, Fernando, Karimi, Bayan, Kiesel, Nikolai, Landi, Gabriel T., Lasek, Aleksander, Lemziakov, Sergei, Monaco, Gabriele Lo, Lutz, Eric, Lvov, Dmitrii, Maillet, Olivier, Mehboudi, Mohammad, Mendonça, Taysa M., Miller, Harry J. D., Mitchell, Andrew K., Mitchison, Mark T., Mukherjee, Victor, Paternostro, Mauro, Pekola, Jukka, Perarnau-Llobet, Martí, Poschinger, Ulrich, Rolandi, Alberto, Rosa, Dario, Sánchez, Rafael, Santos, Alan C., Sarthour, Roberto S., Sela, Eran, Solfanelli, Andrea, Souza, Alexandre M., Splettstoesser, Janine, Tan, Dian, Tesser, Ludovico, Van Vu, Tan, Widera, Artur, Halpern, Nicole Yunger, Zawadzki, Krissia
Format: Preprint
Publié: 2025
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author Campbell, Steve
D'Amico, Irene
Ciampini, Mario A.
Anders, Janet
Ares, Natalia
Artini, Simone
Auffèves, Alexia
Oftelie, Lindsay Bassman
Bettmann, Laetitia P.
Bonança, Marcus V. S.
Busch, Thomas
Campisi, Michele
Cavalcante, Moallison F.
Correa, Luis A.
Cuestas, Eloisa
Dag, Ceren B.
Dago, Salambô
Deffner, Sebastian
Del Campo, Adolfo
Deutschmann-Olek, Andreas
Donadi, Sandro
Doucet, Emery
Elouard, Cyril
Ensslin, Klaus
Erker, Paul
Fabbri, Nicole
Fedele, Federico
Fiusa, Guilherme
Fogarty, Thomás
Folk, Joshua
Guarnieri, Giacomo
Hegde, Abhaya S.
Hernández-Gómez, Santiago
Hu, Chang-Kang
Iemini, Fernando
Karimi, Bayan
Kiesel, Nikolai
Landi, Gabriel T.
Lasek, Aleksander
Lemziakov, Sergei
Monaco, Gabriele Lo
Lutz, Eric
Lvov, Dmitrii
Maillet, Olivier
Mehboudi, Mohammad
Mendonça, Taysa M.
Miller, Harry J. D.
Mitchell, Andrew K.
Mitchison, Mark T.
Mukherjee, Victor
Paternostro, Mauro
Pekola, Jukka
Perarnau-Llobet, Martí
Poschinger, Ulrich
Rolandi, Alberto
Rosa, Dario
Sánchez, Rafael
Santos, Alan C.
Sarthour, Roberto S.
Sela, Eran
Solfanelli, Andrea
Souza, Alexandre M.
Splettstoesser, Janine
Tan, Dian
Tesser, Ludovico
Van Vu, Tan
Widera, Artur
Halpern, Nicole Yunger
Zawadzki, Krissia
author_facet Campbell, Steve
D'Amico, Irene
Ciampini, Mario A.
Anders, Janet
Ares, Natalia
Artini, Simone
Auffèves, Alexia
Oftelie, Lindsay Bassman
Bettmann, Laetitia P.
Bonança, Marcus V. S.
Busch, Thomas
Campisi, Michele
Cavalcante, Moallison F.
Correa, Luis A.
Cuestas, Eloisa
Dag, Ceren B.
Dago, Salambô
Deffner, Sebastian
Del Campo, Adolfo
Deutschmann-Olek, Andreas
Donadi, Sandro
Doucet, Emery
Elouard, Cyril
Ensslin, Klaus
Erker, Paul
Fabbri, Nicole
Fedele, Federico
Fiusa, Guilherme
Fogarty, Thomás
Folk, Joshua
Guarnieri, Giacomo
Hegde, Abhaya S.
Hernández-Gómez, Santiago
Hu, Chang-Kang
Iemini, Fernando
Karimi, Bayan
Kiesel, Nikolai
Landi, Gabriel T.
Lasek, Aleksander
Lemziakov, Sergei
Monaco, Gabriele Lo
Lutz, Eric
Lvov, Dmitrii
Maillet, Olivier
Mehboudi, Mohammad
Mendonça, Taysa M.
Miller, Harry J. D.
Mitchell, Andrew K.
Mitchison, Mark T.
Mukherjee, Victor
Paternostro, Mauro
Pekola, Jukka
Perarnau-Llobet, Martí
Poschinger, Ulrich
Rolandi, Alberto
Rosa, Dario
Sánchez, Rafael
Santos, Alan C.
Sarthour, Roberto S.
Sela, Eran
Solfanelli, Andrea
Souza, Alexandre M.
Splettstoesser, Janine
Tan, Dian
Tesser, Ludovico
Van Vu, Tan
Widera, Artur
Halpern, Nicole Yunger
Zawadzki, Krissia
contents The last two decades has seen quantum thermodynamics become a well established field of research in its own right. In that time, it has demonstrated a remarkably broad applicability, ranging from providing foundational advances in the understanding of how thermodynamic principles apply at the nano-scale and in the presence of quantum coherence, to providing a guiding framework for the development of efficient quantum devices. Exquisite levels of control have allowed state-of-the-art experimental platforms to explore energetics and thermodynamics at the smallest scales which has in turn helped to drive theoretical advances. This Roadmap provides an overview of the recent developments across many of the field's sub-disciplines, assessing the key challenges and future prospects, providing a guide for its near term progress.
format Preprint
id arxiv_https___arxiv_org_abs_2504_20145
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Roadmap on Quantum Thermodynamics
Campbell, Steve
D'Amico, Irene
Ciampini, Mario A.
Anders, Janet
Ares, Natalia
Artini, Simone
Auffèves, Alexia
Oftelie, Lindsay Bassman
Bettmann, Laetitia P.
Bonança, Marcus V. S.
Busch, Thomas
Campisi, Michele
Cavalcante, Moallison F.
Correa, Luis A.
Cuestas, Eloisa
Dag, Ceren B.
Dago, Salambô
Deffner, Sebastian
Del Campo, Adolfo
Deutschmann-Olek, Andreas
Donadi, Sandro
Doucet, Emery
Elouard, Cyril
Ensslin, Klaus
Erker, Paul
Fabbri, Nicole
Fedele, Federico
Fiusa, Guilherme
Fogarty, Thomás
Folk, Joshua
Guarnieri, Giacomo
Hegde, Abhaya S.
Hernández-Gómez, Santiago
Hu, Chang-Kang
Iemini, Fernando
Karimi, Bayan
Kiesel, Nikolai
Landi, Gabriel T.
Lasek, Aleksander
Lemziakov, Sergei
Monaco, Gabriele Lo
Lutz, Eric
Lvov, Dmitrii
Maillet, Olivier
Mehboudi, Mohammad
Mendonça, Taysa M.
Miller, Harry J. D.
Mitchell, Andrew K.
Mitchison, Mark T.
Mukherjee, Victor
Paternostro, Mauro
Pekola, Jukka
Perarnau-Llobet, Martí
Poschinger, Ulrich
Rolandi, Alberto
Rosa, Dario
Sánchez, Rafael
Santos, Alan C.
Sarthour, Roberto S.
Sela, Eran
Solfanelli, Andrea
Souza, Alexandre M.
Splettstoesser, Janine
Tan, Dian
Tesser, Ludovico
Van Vu, Tan
Widera, Artur
Halpern, Nicole Yunger
Zawadzki, Krissia
Quantum Physics
The last two decades has seen quantum thermodynamics become a well established field of research in its own right. In that time, it has demonstrated a remarkably broad applicability, ranging from providing foundational advances in the understanding of how thermodynamic principles apply at the nano-scale and in the presence of quantum coherence, to providing a guiding framework for the development of efficient quantum devices. Exquisite levels of control have allowed state-of-the-art experimental platforms to explore energetics and thermodynamics at the smallest scales which has in turn helped to drive theoretical advances. This Roadmap provides an overview of the recent developments across many of the field's sub-disciplines, assessing the key challenges and future prospects, providing a guide for its near term progress.
title Roadmap on Quantum Thermodynamics
topic Quantum Physics
url https://arxiv.org/abs/2504.20145