Statistical Theory of Finite Fermi-Systems Based on the Structure of Chaotic Eigenstates
arXiv:cond-mat/9707016 · doi:10.1103/PhysRevE.56.5144
Abstract
The approach is developed for the description of isolated Fermi-systems with finite number of particles, such as complex atoms, nuclei, atomic clusters etc. It is based on statistical properties of chaotic excited states which are formed by the interaction between particles. New type of ``microcanonical'' partition function is introduced and expressed in terms of the average shape of eigenstates where is the total energy of the system. This partition function plays the same role as the canonical expression for open systems in thermal bath. The approach allows to calculate mean values and non-diagonal matrix elements of different operators. In particular, the following problems have been considered: distribution of occupation numbers and its relevance to the canonical and Fermi-Dirac distributions; criteria of equilibrium and thermalization; thermodynamical equation of state and the meaning of temperature, entropy and heat capacity, increase of effective temperature due to the interaction. The problems of spreading widths and shape of the eigenstates are also studied.
17 pages in RevTex and 5 Postscript figures. Changes are RevTex format (instead of plain LaTeX), minor misprint corrections plus additional references. To appear in Phys. Rev. E
References in corpus (1)
Cited by in corpus (125)
- From Quantum Chaos and Eigenstate Thermalization to Statistical Mechanics and Thermodynamics
- The approach to thermal equilibrium in quantized chaotic systems
- Quantum Chaos and Thermalization in Isolated Systems of Interacting Particles
- Onset of quantum chaos in one-dimensional bosonic and fermionic systems and its relation to thermalization
- The Fermi-Pasta-Ulam problem: 50 years of progress
- Localization and the effects of symmetries in the thermalization properties of one-dimensional quantum systems
- Density functional theory with fractional orbital occupations
- Entropy of isolated quantum systems after a quench
- Relaxation and thermalization in the one-dimensional Bose-Hubbard model: A case study for the interaction quantum quench from the atomic limit
- Onset of chaos and relaxation in isolated systems of interacting spins-1/2: energy shell approach
- Emergence of Quantum Chaos in Quantum Computer Core and How to Manage It
- Chaos and statistical relaxation in quantum systems of interacting particles
- Super-Radiant Dynamics, Doorways, and Resonances in Nuclei and Other Open Mesoscopic Systems
- Local quenches with global effects in interacting quantum systems
- On Renyi entropies characterizing the shape and the extension of the phase space representation of quantum wave functions in disordered systems
- Eigenfunction distribution for the Rosenzweig-Porter model
- Quench Dynamics of Isolated Many-Body Quantum Systems
- Time Fluctuations in Isolated Quantum Systems of Interacting Particles
- General Features of the Relaxation Dynamics of Interacting Quantum Systems
- Thermalization and ergodicity in many-body open quantum systems
- Quantum Chaos, Delocalization, and Entanglement in Disordered Heisenberg Models
- Excited Eigenstates and Strength Functions for Isolated Systems of Interacting Particles
- Irregular Dynamics in a One-Dimensional Bose System
- Spectral Properties of the k-Body Embedded Gaussian Ensembles of Random Matrices
- Integrability vs Quantum Thermalization
- Entropy production and wave packet dynamics in the Fock space of closed chaotic many-body systems
- Broken Ergodicity in classically chaotic spin systems
- Unconventional decay law for excited states in closed many-body systems
- Spectral Statistics of the Two-Body Random Ensemble Revisited
- Role of exact exchange in thermally-assisted-occupation density functional theory: A proposal of new hybrid schemes
- Single-particle and many-body analyses of a quasiperiodic integrable system after a quench
- Distribution of Resonance Widths and Dynamics of Continuum Coupling
- Nonexponential fidelity decay in isolated interacting quantum systems
- Structure of Eigenstates and Local Spectral Density of States: A Three-Orbital Schematic Shell Model
- Timescales in the quench dynamics of many-body quantum systems: Participation ratio vs out-of-time ordered correlator
- Statistical properties of eigenstate amplitudes in complex quantum systems
- Effects of the interplay between initial state and Hamiltonian on the thermalization of isolated quantum many-body systems
- Relaxation and Thermalization of Isolated Many-Body Quantum Systems
- Chaos and Thermalization in a Dynamical Model of Two Interacting Particles
- Thermodynamics of pairing in mesoscopic systems
- Periodic Chaotic Billiards: Quantum-Classical Correspondence in Energy Space
- Nuclear Level Density: Shell Model vs Mean Field
- Quantum-Classical Correspondence in Energy Space: Two Interacting Spin-Particles
- Structure of wavefunctions in (1+2)-body random matrix ensembles
- Many-body entropies, correlations, and emergence of statistical relaxation in interaction quench dynamics of ultracold bosons
- Typicality of Prethermalization
- Relaxation theory for perturbed many-body quantum systems versus numerics and experiment
- Spectral Properties of the k-Body Embedded Gaussian Ensembles of Random Matrices for Bosons
- Open system of interacting fermions: Statistical properties of cross sections and fluctuations
- The Non--Ergodicity Threshold: Time Scale for Magnetic Reversal
- Quantum-classical correspondence for local density of states and eigenfunctions of a chaotic periodic billiard
- Return probability: Exponential versus Gaussian decay
- Duality Between the Weak and Strong Interaction Limits for Randomly Interacting Fermions
- Chaos Thresholds in finite Fermi systems
- Exponentially fast dynamics of chaotic many-body systems
- Thermalization in open classical systems with finite heat baths
- Delocalization border and onset of chaos in a model of quantum computation
- Initial state dependence of the quench dynamics in integrable quantum systems. III. Chaotic states
- Non-Cayley-tree model for quasiparticle decay in a quantum dot
- Relaxation, chaos, and thermalization in a three-mode model of a BEC
- An Exactly Solvable Model for the Integrability-Chaos Transition in Rough Quantum Billiards
- Electron recombination, photoionization and scattering via many-electron compound resonances
- Quantum Computation of a Complex System : the Kicked Harper Model
- Semiclassical properties of eigenfunctions and occupation number distribution for a model of two interacting particles
- Many-body localization and thermalization in the full probability distribution function of observables
- Chaos and Thermalization in the Spin-Boson Dicke Model
- Thermalization in the Two-Body Random Ensemble
- Scaling at the chaos threshold in an interacting quantum dot
- From few- to many-body quantum systems
- Exponential increase of energy level density in atoms: Th and Th II
- Strength functions, entropies and duality in weakly to strongly interacting fermionic systems
- Avoiding Quantum Chaos in Quantum Computation
- Internal chaos in an open quantum system: From Ericson to conductance fluctuations
- Signatures of chaos and thermalization in the dynamics of many-body quantum systems
- Thermalization in one- plus two-body ensembles for dense interacting boson systems
- A Solvable Regime of Disorder and Interactions in Ballistic Nanostructures, Part I: Consequences for Coulomb Blockade
- Classical statistical mechanics of a few-body interacting spin model
- Time reversal invariance violation in neutron-nucleus scattering
- Emergence of correlations in the process of thermalization of interacting bosons
- Thermalization in closed quantum systems: semiclassical approach
- Chaos and localization in the wavefunctions of complex atoms NdI, PmI and SmI
- Probing the edge between integrability and quantum chaos in interacting few-atom systems
- Temperature of a single chaotic eigenstate
- Classical Dissipation and Asymptotic Equilibrium via Interaction with Chaotic Systems
- How many particles make up a chaotic many-body quantum system?
- Correlations in quantum systems and branch points in the complex plane
- Interaction-Driven Equilibrium and Statistical Laws in Small Systems. The Cerium Atom
- Full density matrix dynamics for large quantum systems: Interactions, Decoherence and Inelastic effects
- High-lying single-particle modes, chaos, correlational entropy, and doubling phase transition
- Loschmidt echo in many-spin systems: a quest for intrinsic decoherence and emergent irreversibility
- Non-equilibrium dynamics of the Tavis-Cummings model
- Phase-space characterization of complexity in quantum many-body dynamics
- Prediction of quantum many-body chaos in protactinium atom
- Merits and Qualms of Work Fluctuations in Classical Fluctuation Theorems
- Localization-Delocalization Transitions in Bosonic Random Matrix Ensembles
- Quantum dynamics of the intramolecular vibrational energy redistribution in OCS: From localization to quasi-thermalization
- Level-resolved quantum statistical theory of electron capture into many-electron compound resonances in highly charged ions
- A semiquantal approach to finite systems of interacting particles
- Spectral statistics of rare-earth nuclei: Investigation of shell model configuration effect
- Quantum-classical correspondence of strongly chaotic many-body spin models
- Bivariate -distribution for transition matrix elements in Breit-Wigner to Gaussian domains of interacting particle systems
- Average-fluctuation separation in energy levels in many-particle quantum systems with -body interactions using -Hermite polynomials
- Random Matrix Ensembles For Many-Body Quantum Systems
- Typical, finite baths as a means of exact simulation of open quantum systems
- Relaxation of Shannon entropy for trapped interacting bosons with dipolar interactions
- Modification of quantum many-body relaxation by perturbations exhibiting a banded matrix structure
- Structure of wavefunction for interacting bosons in mean-field with random -body interactions
- Decoherence via coupling to a finite quantum heat bath
- Generalized Survival Probability
- Localized Thermal States
- Relaxation dynamics of ultracold bosons in a double-well potential: Thermalization and prethermalization in a nearly integrable model
- Wavefunction structure in quantum many-fermion systems with -body interactions: conditional -normal form of strength functions
- Long-lived states with well-defined spins in spin- homogeneous Bose gases
- Canonical density matrices from eigenstates of mixed systems
- Eigenstate thermalization and disappearance of quantum many-body scar states in interacting fermion systems
- The Markov approximation revisited: Inconsistency of the standard quantum Brownian motion model
- Parity and Time Reversal Invariance Violation in Neutron-Nucleus Scattering
- Statistical Nuclear Spectroscopy with -normal and bivariate -normal distributions and -Hermite polynomials
- Thermalization in many-fermion quantum systems with one- plus random -body interactions
- Derivation of Bose-Einstein and Fermi-Dirac statistics from quantum mechanics: gauge-theoretical structure
- Electron-hole generations: A numerical approach to interacting fermion systems
- Formation of superscar waves in plane polygonal billiards
- Eigenstate thermalization and ensemble equivalence in few-body fermionic systems
- Density matrix of chaotic quantum systems
- Metastability, chaos and spectrum tomography for Bose-Hubbard rings and chains