Exact zero modes arise in two-, three-, and four-arm interacting Majorana junctions from incommensurate correlations, forming protected parity pairs with an additional central Majorana in the Y-junction.
Title resolution pending
4 Pith papers cite this work. Polarity classification is still indexing.
representative citing papers
Develops cross-correlation spectroscopy via time-dependent transport theory to extract and heuristically model electron traversal times in Majorana nanowire junctions as a potential experimental discriminant for genuine vs. spurious MZMs.
DQPTs in the 1D XY model fall into six topological classes determined by the number and type (boundary or interior) of critical modes, with three classes newly identified.
Exponential protection of Majorana zero modes in finite disordered nanowires holds only for disorder much smaller than the superconducting gap.
citing papers explorer
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Exact zero modes in interacting Majorana X- and Y-junctions
Exact zero modes arise in two-, three-, and four-arm interacting Majorana junctions from incommensurate correlations, forming protected parity pairs with an additional central Majorana in the Y-junction.
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Current cross-correlation spectroscopy of Majorana bound states
Develops cross-correlation spectroscopy via time-dependent transport theory to extract and heuristically model electron traversal times in Majorana nanowire junctions as a potential experimental discriminant for genuine vs. spurious MZMs.
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Topological Classification of Dynamical Quantum Phase Transitions in the 1D XY model via Critical Mode Analysis
DQPTs in the 1D XY model fall into six topological classes determined by the number and type (boundary or interior) of critical modes, with three classes newly identified.
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Majorana zero modes in semiconductor-superconductor hybrid structures: Defining topology in short and disordered nanowires through Majorana splitting
Exponential protection of Majorana zero modes in finite disordered nanowires holds only for disorder much smaller than the superconducting gap.