Quench dynamics and parity blocking in Majorana wires
arXiv:1412.5255 · doi:10.1088/1367-2630/17/5/053036
Abstract
We theoretically explore quench dynamics in a finite-sized topological fermionic p-wave superconducting wire with the goal of demonstrating that topological order can have marked effects on such non-equilibrium dynamics. In the case studied here, topological order is reflected in the presence of two (nearly) isolated Majorana fermionic end bound modes together forming an electronic state that can be occupied or not, leading to two (nearly) degenerate ground states characterized by fermion parity. Our study begins with a characterization of the static properties of the finite-sized wire, including the behavior of the Majorana end modes and the form of the tunnel coupling between them; a transfer matrix approach to analytically determine the locations of the zero energy contours where this coupling vanishes; and a Pfaffian approach to map the ground state parity in the associated phase diagram. We next study the quench dynamics resulting from initializing the system in a topological ground state and then dynamically tuning one of the parameters of the Hamiltonian. For this, we develop a dynamic quantum many-body technique that invokes a Wick's theorem for Majorana fermions, vastly reducing the numerical effort given the exponentially large Hilbert space. We investigate the salient and detailed features of two dynamic quantities - the overlap between the time-evolved state and the instantaneous ground state (adiabatic fidelity) and the residual energy. When the parity of the instantaneous ground state flips successively with time, we find that the time-evolved state can dramatically switch back and forth between this state and an excited state even when the quenching is very slow, a phenomenon that we term "parity blocking". This parity blocking becomes prominently manifest as non-analytic jumps as a function of time in both dynamic quantities.
References in corpus (32)
- Non-Abelian Anyons and Topological Quantum Computation
- Signatures of Majorana fermions in hybrid superconductor-semiconductor nanowire devices
- Majorana Fermions and a Topological Phase Transition in Semiconductor-Superconductor Heterostructures
- Evidence of Majorana fermions in an Al - InAs nanowire topological superconductor
- Observation of Majorana Fermions in a Nb-InSb Nanowire-Nb Hybrid Quantum Device
- Introduction to topological superconductivity and Majorana fermions
- Anomalous modulation of a zero bias peak in a hybrid nanowire-superconductor device
- Universal adiabatic dynamics across a quantum critical point
- Quantum quench dynamics of the Luttinger model
- Breakdown of the adiabatic limit in low dimensional gapless systems
- Supplementary Information to the paper ``Breakdown of the adiabatic limit in low dimensional gapless systems''
- Defect production in non-linear quench across a quantum critical point
- Parity qubits and poor man's Majorana bound states in double quantum dots
- Exact results for quench dynamics and defect production in a two-dimensional model
- Topology induced anomalous defect production by crossing a quantum critical point
- Quenching Dynamics of a quantum XY spin-1/2 chain in presence of a transverse field
- Quantum Quenches, Thermalization and Many-Body Localization
- Optimal non-linear passage through a quantum critical point
- Majorana Fermions: The race continues
- Adiabatic dynamics in open quantum critical many-body systems
- Dynamical non-ergodic scaling in continuous finite-order quantum phase transitions
- Quenches in a quasi-disordered integrable lattice system: Dynamics and statistical description of observables after relaxation
- Quench dynamics and defect production in the Kitaev and extended Kitaev models
- Quenching along a gapless line: A different exponent for defect density
- Defect production due to quenching through a multicritical point
- Fate of Majorana fermions and Chern numbers after a quantum quench
- Theory of defect production in nonlinear quench across a quantum critical point
- A Description of Kitaev's Honeycomb Model with Toric-Code Stabilizers
- Adiabatic nonlinear probes of one-dimensional Bose gases
- Topological degeneracy and vortex manipulation in Kitaev's honeycomb model
- Adiabatic multicritical quantum quenches: Continuously varying exponents depending on the direction of quenching
- Universal nonequilibrium signatures of Majorana zero modes in quench dynamics
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- Topological superconductivity and Majorana states in low-dimensional systems
- Dynamical quantum phase transitions in a mesoscopic superconducting system
- Dynamics of hybrid junctions of Majorana wires
- Local Quench, Majorana Zero Modes, and Disturbance Propagation in the Ising chain
- Manifestation of Majorana modes overlap in the Aharonov-Bohm effect
- Topological phase transition driven by magnetic field in one-dimensional topological superconductor rings
- Breakdown of local convertibility through Majorana modes in a quantum quench
- Polynomial description of inhomogeneous topological superconducting wires
- Bipartite Fidelity and Loschmidt Echo of Bosonic Conformal Interface
- Topological signatures in a weakly dissipative Kitaev chain of finite length