Abstract:
The temperature and electric field dependence of electronic contribution to the thermal conductivity (TC) of a granular superconductor is considered within a 3D model of inductive Josephson junction arrays. In addition to a low-temperature maximum of zero-field TC κ(T,0) (controlled by mutual inductance L0 and normal state resistivity Rn), the model predicts two major effects in applied electric field: (i) decrease of the linear TC, and (ii) giant enhancement of the nonlinear (i.e. ∇T-dependent) TC with Δκ(T,E)/κ(T,0) reaching 500% for parallel electric fields E≃ET (ET=S0|∇T| is an «intrinsic» thermoelectric field). A possiblity of experimental observation of the predicted effects in granular superconductors is discussed.
Citation:
S. A. Sergeenkov, “Electric field dependence of thermal conductivity of a granular superconductor: Giant field-induced effects predicted”, Pis'ma v Zh. Èksper. Teoret. Fiz., 76:3 (2002), 204–208; JETP Letters, 76:3 (2002), 170–174
\Bibitem{Ser02}
\by S.~A.~Sergeenkov
\paper Electric field dependence of thermal conductivity of a granular superconductor: Giant field-induced effects predicted
\jour Pis'ma v Zh. \`Eksper. Teoret. Fiz.
\yr 2002
\vol 76
\issue 3
\pages 204--208
\mathnet{http://mi.mathnet.ru/jetpl2886}
\transl
\jour JETP Letters
\yr 2002
\vol 76
\issue 3
\pages 170--174
\crossref{https://doi.org/10.1134/1.1514762}
\scopus{https://www.scopus.com/record/display.url?origin=inward&eid=2-s2.0-0346985526}
Linking options:
https://www.mathnet.ru/eng/jetpl2886
https://www.mathnet.ru/eng/jetpl/v76/i3/p204
This publication is cited in the following 15 articles:
Grigorii Skorupskii, Khoa N. Le, Dmitri Leo Mesoza Cordova, Luming Yang, Tianyang Chen, Christopher H. Hendon, Maxx Q. Arguilla, Mircea Dincă, Proc. Natl. Acad. Sci. U.S.A., 119:34 (2022)
Lidia Saluto, Liliana Restuccia, David Jou, Journal of Mathematical Physics, 63:6 (2022)
Afsaneh E., Yavari H., Phys. Lett. A, 382:34 (2018), 2388–2393
Wolf E.L., Josephson Junctions: History, Devices, and Applications, eds. Wolf E., Arnold G., Gurvitch M., Zasadzinski J., Pan Stanford Publishing Pte Ltd, 2017, 17–46
JETP Letters, 94:12 (2011), 845–848
S. Sergeenkov, V. A. G. Rivera, E. Marega, F. M. Araujo-Moreira, Journal of Applied Physics, 107:9 (2010)
Kartik Senapati, Mark G. Blamire, Zoe H. Barber, Applied Physics Letters, 97:16 (2010)
K. Senapati, Z. H. Barber, Applied Physics Letters, 94:17 (2009)
Sergei Sergeenkov, Physics Letters A, 372:16 (2008), 2917
Sergei Sergeenkov, Journal of Applied Physics, 102:6 (2007)
S. Sergeenkov, J. Exp. Theor. Phys., 101:5 (2005), 919
F. M. Araujo-Moreira, W. Maluf, S. Sergeenkov, Eur. Phys. J. B, 44:1 (2005), 33