Multi-particle content of Majorana zero-modes in the interacting p-wave wire
arXiv:1507.06539 · doi:10.1103/PhysRevB.92.155434
Abstract
In the topological phase of p-wave superconductors, zero-energy Majorana quasi-particle excitations can be well-defined in the presence of local density-density interactions. Here we examine this phenomenon from the perspective of matrix representations of the commutator ,with the aim of characterising the multi-particle content of the many-body Majorana mode. To do this we show that, for quadratic fermionic systems, can always be decomposed into sub-blocks that act as multi-particle generalisations of the BdG/Majorana forms that encode single-particle excitations. In this picture, density-density like interactions will break this exact excitation-number symmetry, coupling different sub-blocks and lifting degeneracies so that the eigen-operators of the commutator take the form of individual eigenstate transitions . However, the Majorana mode is special in that zero-energy transitions are not destroyed by local interactions and it becomes possible to define many-body Majoranas as the odd-parity zero-energy solutions of that minimise their excitation number. This idea forms the basis for an algorithm which is used to characterise the multi-particle excitation content of the Majorana zero modes of the one-dimensional p-wave lattice model. We find that the multi-particle content of the Majorana zero-mode operators is significant even at modest interaction strengths. This has important consequences for the stability of Majorana based qubits when they are coupled to a heat bath. We will also discuss how these findings differ from previous work regarding the structure of the many-body-Majorana operators and point out that this should affect how certain experimental features are interpreted.
16 pages , 11 figures
References in corpus (14)
- 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 Ferromagnetic Atomic Chains on a Superconductor
- Matrix Product States, Projected Entangled Pair States, and variational renormalization group methods for quantum spin systems
- Interaction Effects in Topological Superconducting Wires Supporting Majorana Fermions
- Majorana edge states in interacting one-dimensional systems
- Exact ground states and topological order in interacting Kitaev/Majorana chains
- Stability of zero modes in parafermion chains
- Many-body characterization of topological superconductivity: The Richardson-Gaudin-Kitaev chain
- Localized Majorana-like modes in a number conserving setting: An exactly solvable model
- Multiple signatures of topological transitions for interacting fermions in chain lattices
- A many-body interpretation of Majorana bound states, and conditions for their localisation
Cited by in corpus (29)
- Majorana bound states in magnetic skyrmions
- Topological order in the Kitaev/Majorana chain in the presence of disorder and interactions
- Majorana wavefunction oscillations, fermion parity switches, and disorder in Kitaev chains
- Majorana Kramers pairs in Rashba double nanowires with interactions and disorder
- Robustness of Majorana edge modes and topological order -- exact results for the symmetric interacting Kitaev chain with disorder
- Parafermionic clock models and quantum resonance
- Exact solutions and topological phase diagram in interacting dimerized Kitaev topological superconductors
- Exact ground states for interacting Kitaev chains
- Localization-enhanced and degraded topological-order in interacting p-wave wires
- Error generation and propagation in Majorana-based topological qubits
- Topological phase diagrams of exactly solvable non-Hermitian interacting Kitaev chains
- Topological and quantum critical properties of the interacting Majorana chain model
- Exact projector Hamiltonian, local integrals of motion, and many-body localization with topological order
- Quantum-dot-based Kitaev chains: Majorana quality measures and scaling with increasing chain length
- Two-fluid coexistence in a spinless fermions chain with pair hopping
- Pairing in spin chains and spinless fermions with next-nearest neighbour interactions
- Majorana zero modes and their bosonization
- Two-fluid coexistence and phase separation in a one dimensional model with pair hopping and density interactions
- Constrained thermalisation and topological superconductivity
- Extreme many-body scarring in a quantum spin chain via weak dynamical constraints
- Almost Strong Zero Modes at Finite Temperature
- Engineering of many-body Majorana states in a topological insulator/s-wave superconductor heterostructure
- Effects of Quantum Pair Creation and Annihilation on a Classical Exclusion Process: the transverse XY model with TASEP
- Dynamical Phase Error in Interacting Topological Quantum Memories
- Density matrix renormalization group study of the interacting Kitaev chain with quasi-periodic disorder
- Constructing edge zero modes through domain wall angle conservation
- Sub-gap Fano resonances in a topological superconducting wire with on-site Coulomb interactions
- Quantifying robustness and locality of Majorana bound states in interacting systems
- Explicit forms of zero modes in symmetric interacting Kitaev chain without and with dimerization