Sparse polynomial space approach to dissipative quantum systems: Application to the sub-ohmic spin-boson model
arXiv:0812.2808 · doi:10.1103/PhysRevLett.102.150601
Abstract
We propose a general numerical approach to open quantum systems with a coupling to bath degrees of freedom. The technique combines the methodology of polynomial expansions of spectral functions with the sparse grid concept from interpolation theory. Thereby we construct a Hilbert space of moderate dimension to represent the bath degrees of freedom, which allows us to perform highly accurate and efficient calculations of static, spectral and dynamic quantities using standard exact diagonalization algorithms. The strength of the approach is demonstrated for the phase transition, critical behaviour, and dissipative spin dynamics in the spin boson model
4 pages, 4 figures, revised version accepted for publication in PRL
References in corpus (8)
- The numerical renormalization group method for quantum impurity systems
- The Kernel Polynomial Method
- Numerical Renormalization Group for Bosonic Systems and Application to the Subohmic Spin-Boson Model
- Spin Precession and Real Time Dynamics in the Kondo Model: A Time-Dependent Numerical Renormalization-Group Study
- The quantum phase transition in the sub-ohmic spin-boson model: Quantum Monte-Carlo study with a continuous imaginary time cluster algorithm
- Entanglement Entropy, decoherence, and quantum phase transition of a dissipative two-level system
- Real Time Evolution in Quantum Many-Body Systems With Unitary Perturbation Theory
- Chebyshev approach to quantum systems coupled to a bath
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