Breakdown of universal transport in correlated d-wave superconductors

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Breakdown of universal transport in correlated d-wave superconductors. / Andersen, Brian Møller; Hirschfeld, P. J.

I: Physical Review Letters, Bind 100, Nr. 25, 2008, s. 257003.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Andersen, BM & Hirschfeld, PJ 2008, 'Breakdown of universal transport in correlated d-wave superconductors', Physical Review Letters, bind 100, nr. 25, s. 257003. https://doi.org/10.1103/PhysRevLett.100.257003

APA

Andersen, B. M., & Hirschfeld, P. J. (2008). Breakdown of universal transport in correlated d-wave superconductors. Physical Review Letters, 100(25), 257003. https://doi.org/10.1103/PhysRevLett.100.257003

Vancouver

Andersen BM, Hirschfeld PJ. Breakdown of universal transport in correlated d-wave superconductors. Physical Review Letters. 2008;100(25):257003. https://doi.org/10.1103/PhysRevLett.100.257003

Author

Andersen, Brian Møller ; Hirschfeld, P. J. / Breakdown of universal transport in correlated d-wave superconductors. I: Physical Review Letters. 2008 ; Bind 100, Nr. 25. s. 257003.

Bibtex

@article{f5d0f020f83c11ddb219000ea68e967b,
title = "Breakdown of universal transport in correlated d-wave superconductors",
abstract = "In this paper we study the flat (k=0) cosmological Friedmann-Robertson-Walker model with holonomy corrections of loop quantum gravity. The considered universe contains a massless scalar field and the cosmological constant Lambda. We find analytical solutions for this model in different configurations and investigate its dynamical behavior in the whole phase space. Such an approach might be significant e.g. as a phenomenological reference for a further, fully quantum treatment. We show the explicit influence of Lambda on the qualitative and quantitative character of solutions. Even in the case of positive Lambda the oscillating solutions without the initial and final singularity appear as a generic case for some quantization schemes. Udgivelsesdato: 27 June",
author = "Andersen, {Brian M{\o}ller} and Hirschfeld, {P. J.}",
year = "2008",
doi = "10.1103/PhysRevLett.100.257003",
language = "English",
volume = "100",
pages = "257003",
journal = "Physical Review Letters",
issn = "0031-9007",
publisher = "American Physical Society",
number = "25",

}

RIS

TY - JOUR

T1 - Breakdown of universal transport in correlated d-wave superconductors

AU - Andersen, Brian Møller

AU - Hirschfeld, P. J.

PY - 2008

Y1 - 2008

N2 - In this paper we study the flat (k=0) cosmological Friedmann-Robertson-Walker model with holonomy corrections of loop quantum gravity. The considered universe contains a massless scalar field and the cosmological constant Lambda. We find analytical solutions for this model in different configurations and investigate its dynamical behavior in the whole phase space. Such an approach might be significant e.g. as a phenomenological reference for a further, fully quantum treatment. We show the explicit influence of Lambda on the qualitative and quantitative character of solutions. Even in the case of positive Lambda the oscillating solutions without the initial and final singularity appear as a generic case for some quantization schemes. Udgivelsesdato: 27 June

AB - In this paper we study the flat (k=0) cosmological Friedmann-Robertson-Walker model with holonomy corrections of loop quantum gravity. The considered universe contains a massless scalar field and the cosmological constant Lambda. We find analytical solutions for this model in different configurations and investigate its dynamical behavior in the whole phase space. Such an approach might be significant e.g. as a phenomenological reference for a further, fully quantum treatment. We show the explicit influence of Lambda on the qualitative and quantitative character of solutions. Even in the case of positive Lambda the oscillating solutions without the initial and final singularity appear as a generic case for some quantization schemes. Udgivelsesdato: 27 June

U2 - 10.1103/PhysRevLett.100.257003

DO - 10.1103/PhysRevLett.100.257003

M3 - Journal article

C2 - 18643695

VL - 100

SP - 257003

JO - Physical Review Letters

JF - Physical Review Letters

SN - 0031-9007

IS - 25

ER -

ID: 10453957