Reducing nonideal to ideal coupling in random matrix description of chaotic scattering: Application to the time-delay problem
arXiv:cond-mat/0011141 · doi:10.1103/PhysRevE.63.035202
Abstract
We write explicitly a transformation of the scattering phases reducing the problem of quantum chaotic scattering for systems with M statistically equivalent channels at nonideal coupling to that for ideal coupling. Unfolding the phases by their local density leads to universality of their local fluctuations for large M. A relation between the partial time delays and diagonal matrix elements of the Wigner-Smith matrix is revealed for ideal coupling. This helped us in deriving the joint probability distribution of partial time delays and the distribution of the Wigner time delay.
4 pages, revtex, no figures; published version
Cited by in corpus (56)
- Wannier-Stark resonances in optical and semiconductor superlattices
- Random Matrices and Chaos in Nuclear Physics: Nuclear Reactions
- Scattering, reflection and impedance of waves in chaotic and disordered systems with absorption
- Random Matrices close to Hermitian or unitary: overview of methods and results
- Distribution of the S-matrix in chaotic microwave cavities with direct processes and absorption
- Universal Statistics of the Scattering Coefficient of Chaotic Microwave Cavities
- Wigner time delay and related concepts -- Application to transport in coherent conductors
- Wigner time-delay distribution in chaotic cavities and freezing transition
- Experimental and numerical investigation of the reflection coefficient and the distributions of Wigner's reaction matrix for irregular graphs with absorption
- Experimental investigation of Wigner's reaction matrix for irregular graphs with absorption
- Statistics of Impedance, Local Density of States, and Reflection in Quantum Chaotic Systems with Absorption
- Universal Properties of 2-Port Scattering, Impedance and Admittance Matrices of Wave Chaotic Systems
- Delay times and reflection in chaotic cavities with absorption
- Moments of the transmission eigenvalues, proper delay times and random matrix theory I
- Tau-Function Theory of Quantum Chaotic Transport with beta=1,2,4
- Universal transport properties of open microwave cavities with and without time-reversal symmetry
- Distribution of proper delay times in quantum chaotic scattering: A crossover from ideal to weak coupling
- Universal statistics of the local Green's function in quantum chaotic systems with absorption
- Statistics of delay times in mesoscopic systems as a manifestation of eigenfunction fluctuations
- Moments of the transmission eigenvalues, proper delay times and random matrix theory II
- Efficient semiclassical approach for time delays
- Direct Scattering Processes and Signatures of Chaos in Quantum Waveguides
- Generalization of Wigner Time Delay to Sub-Unitary Scattering Systems
- Capacitance and charge relaxation resistance of chaotic cavities - Joint distribution of two linear statistics in the Laguerre ensemble of random matrices
- Moments of random matrices and hypergeometric orthogonal polynomials
- Statistics of Complex Wigner Time Delays as a counter of S-matrix poles: Theory and Experiment
- Symmetry breaking between statistically equivalent, independent channels in a few-channel chaotic scattering
- Statistical distribution of the Wigner-Smith time-delay matrix moments for chaotic cavities
- Correlators for the Wigner-Smith time-delay matrix of chaotic cavities
- Analysis of averaged multichannel delay times
- Large- expansion for the time-delay matrix of ballistic chaotic cavities
- Wigner-Smith time-delay matrix in chaotic cavities with non-ideal contacts
- Integer moments of complex Wishart matrices and Hurwitz numbers
- Distribution of spectral linear statistics on random matrices beyond the large deviation function -- Wigner time delay in multichannel disordered wires
- Use of Transmission and Reflection Complex Time Delays to Reveal Scattering Matrix Poles and Zeros: Example of the Ring Graph
- Effect of chiral symmetry on chaotic scattering from Majorana zero modes
- Statistics of time delay and scattering correlation functions in chaotic systems I. Random Matrix Theory
- Truncated linear statistics associated with the eigenvalues of random matrices II. Partial sums over proper time delays for chaotic quantum dots
- Joint moments of proper delay times
- Distribution of reflection eigenvalues in many-channel chaotic cavities with absorption
- Chaotic Scattering with Localized Losses: S-Matrix Zeros and Reflection Time Difference for Systems with Broken Time Reversal Invariance
- Reflection Time Difference as a probe of S-matrix Zeroes in Chaotic Resonance Scattering
- Fluctuations in an established transmission in the presence of a complex environment
- Signatures of Classical Diffusion in Quantum Fluctuations of 2D Chaotic Systems
- Eigenfunction non-orthogonality factors and the shape of CPA-like dips in a single-channel reflection from lossy chaotic cavities
- Wigner-Smith Time Delay Matrix for Acoustic Scattering: Theory and Phenomenology
- A Physical Interpretation of Imaginary Time Delay
- Time delay statistics for finite number of channels in all symmetry classes
- Distribution of the Wigner-Smith time-delay matrix for chaotic cavities with absorption and coupled Coulomb gases
- Time in dissipative tunneling: subtleties and applications
- Superuniversal Statistics of Complex Time-Delays in Non-Hermitian Scattering Systems
- Random matrices with prescribed eigenvalues and expectation values for random quantum states
- Effect of a tunnel barrier on the scattering from a Majorana bound state in an Andreev billiard
- Semiclassical calculation of time delay statistics in chaotic quantum scattering
- Delay times in chaotic quantum systems
- Spectral chaos bounds from scaling theory of maximally efficient quantum-dynamical scrambling