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Solution of a model for the two-channel electronic Mach-Zehnder interferometer

Abstract:
We develop the theory of electronic Mach-Zehnder interferometers built from quantum Hall edge states at Landau level filling factor \nu = 2, which have been investigated in a series of recent experiments and theoretical studies. We show that a detailed treatment of dephasing and non-equlibrium transport is made possible by using bosonization combined with refermionization to study a model in which interactions between electrons are short-range. In particular, this approach allows a non-perturbative treatment of electron tunneling at the quantum point contacts that act as beam-splitters. We find an exact analytic expression at arbitrary tunneling strength for the differential conductance of an interferometer with arms of equal length, and obtain numerically exact results for an interferometer with unequal arms. We compare these results with previous perturbative and approximate ones, and with observations.
Publication status:
Published

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Publisher copy:
10.1103/PhysRevB.87.045120

Authors


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Institution:
University of Oxford
Division:
MPLS
Department:
Physics
Sub department:
Theoretical Physics
Role:
Author


Journal:
Phys. Rev. B More from this journal
Volume:
87
Issue:
4
Pages:
045120
Publication date:
2012-09-05
DOI:
EISSN:
1550-235X
ISSN:
1098-0121


Language:
English
Keywords:
Pubs id:
pubs:384738
UUID:
uuid:ac942cb7-2a21-467b-a56c-194392bb1caf
Local pid:
pubs:384738
Source identifiers:
384738
Deposit date:
2013-11-17

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