Primary thermometry triad at 6 mK in mesoscopic circuits

Mesoscopic electrical circuits are an ideal platform to explore quantum phenomena, but this requires cooling the electrons to very low temperature, which is challenging. Here, the authors employ three different in situthermometers to report electronic quantum transport at 6mK in a micrometer-scale c...

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Main Authors: Z. Iftikhar, A. Anthore, S. Jezouin, F. D. Parmentier, Y. Jin, A. Cavanna, A. Ouerghi, U. Gennser, F. Pierre
Format: Article
Language:English
Published: Nature Portfolio 2016-09-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/ncomms12908
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author Z. Iftikhar
A. Anthore
S. Jezouin
F. D. Parmentier
Y. Jin
A. Cavanna
A. Ouerghi
U. Gennser
F. Pierre
author_facet Z. Iftikhar
A. Anthore
S. Jezouin
F. D. Parmentier
Y. Jin
A. Cavanna
A. Ouerghi
U. Gennser
F. Pierre
author_sort Z. Iftikhar
collection DOAJ
description Mesoscopic electrical circuits are an ideal platform to explore quantum phenomena, but this requires cooling the electrons to very low temperature, which is challenging. Here, the authors employ three different in situthermometers to report electronic quantum transport at 6mK in a micrometer-scale circuit.
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spelling doaj.art-a5d737320d134dbbb84370643faeb2b82022-12-21T19:27:29ZengNature PortfolioNature Communications2041-17232016-09-01711710.1038/ncomms12908Primary thermometry triad at 6 mK in mesoscopic circuitsZ. Iftikhar0A. Anthore1S. Jezouin2F. D. Parmentier3Y. Jin4A. Cavanna5A. Ouerghi6U. Gennser7F. Pierre8Centre de Nanosciences et de Nanotechnologies, CNRS, Univ Paris Sud-Université Paris-Saclay, Université Paris Diderot-Sorbonne Paris CitéCentre de Nanosciences et de Nanotechnologies, CNRS, Univ Paris Sud-Université Paris-Saclay, Université Paris Diderot-Sorbonne Paris CitéCentre de Nanosciences et de Nanotechnologies, CNRS, Univ Paris Sud-Université Paris-Saclay, Université Paris Diderot-Sorbonne Paris CitéCentre de Nanosciences et de Nanotechnologies, CNRS, Univ Paris Sud-Université Paris-Saclay, Université Paris Diderot-Sorbonne Paris CitéCentre de Nanosciences et de Nanotechnologies, CNRS, Univ Paris Sud-Université Paris-Saclay, Université Paris Diderot-Sorbonne Paris CitéCentre de Nanosciences et de Nanotechnologies, CNRS, Univ Paris Sud-Université Paris-Saclay, Université Paris Diderot-Sorbonne Paris CitéCentre de Nanosciences et de Nanotechnologies, CNRS, Univ Paris Sud-Université Paris-Saclay, Université Paris Diderot-Sorbonne Paris CitéCentre de Nanosciences et de Nanotechnologies, CNRS, Univ Paris Sud-Université Paris-Saclay, Université Paris Diderot-Sorbonne Paris CitéCentre de Nanosciences et de Nanotechnologies, CNRS, Univ Paris Sud-Université Paris-Saclay, Université Paris Diderot-Sorbonne Paris CitéMesoscopic electrical circuits are an ideal platform to explore quantum phenomena, but this requires cooling the electrons to very low temperature, which is challenging. Here, the authors employ three different in situthermometers to report electronic quantum transport at 6mK in a micrometer-scale circuit.https://doi.org/10.1038/ncomms12908
spellingShingle Z. Iftikhar
A. Anthore
S. Jezouin
F. D. Parmentier
Y. Jin
A. Cavanna
A. Ouerghi
U. Gennser
F. Pierre
Primary thermometry triad at 6 mK in mesoscopic circuits
Nature Communications
title Primary thermometry triad at 6 mK in mesoscopic circuits
title_full Primary thermometry triad at 6 mK in mesoscopic circuits
title_fullStr Primary thermometry triad at 6 mK in mesoscopic circuits
title_full_unstemmed Primary thermometry triad at 6 mK in mesoscopic circuits
title_short Primary thermometry triad at 6 mK in mesoscopic circuits
title_sort primary thermometry triad at 6 mk in mesoscopic circuits
url https://doi.org/10.1038/ncomms12908
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