All Possible Coupling Schemes in XY Spin Chains for Perfect State Transfer
arXiv:1101.1156 · doi:10.1103/PhysRevA.84.012307
Abstract
We investigate quantum state transfer in XY spin chains and propose a recursive procedure to construct the nonuniform couplings of these chains with arbitrary length to achieve perfect state transfer(PST). We show that this method is capable of finding all possible coupling schemes for PST. These schemes, without external control fields, only involve preengineered couplings but not dynamical control of them, so they can be simply realized experimentally. The analytical solutions provide all information for coupling design.
4 pages, 1 figures
References in corpus (9)
- Coupling Superconducting Qubits via a Cavity Bus
- Superconducting Circuits and Quantum Information
- Perfect Transfer of Arbitrary States in Quantum Spin Networks
- Quantum Communication through Spin Chain Dynamics: an Introductory Overview
- Mirror Inversion of Quantum States in Linear Registers
- Spin Chains as Perfect Quantum State Mirrors
- Perfect state transfer on a spin-chain without state initialization
- Perfect State Transfer: Beyond Nearest-Neighbor Couplings
- Perfect state transfer in long-range interacting spin chains
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