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Quantized Transconductance Emerges from Nonsymmetric Quantum Fluctuations
1Delft University of Technology, Kavli Institute of Nanoscience, 2628 CJ Delft, The Netherlands.
Abstract:
We show theoretically that weak quantum fluctuations induced by a nonsymmetric electromagnetic environment may lead to a quantized transconductance of a multiterminal quantum contact rather than to a blockade of transport in the contact. The result suggests the possibility to realize quantum Hall phenomenology without its common ingredients and/or a topological quantum state.
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