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Nonlinear dynamics and chaos
Coulomb blockade; single-elec...
Monte Carlo models
Shell model
Level density
Algebraic methods
Quantum dots
Electron states and collectiv...
Tunneling
Relativistic scattering theory
Quantum chaos; semiclassical ...
Statistical compound-nucleus ...
Chaos in nuclear systems
Models based on group theory
Giant resonances
Nuclear structure models and ...
Molecular excitation and ioni...
Elastic scattering
Group theory
39 A 58
1.
Kaplan L.; Alhassid Y.
Dynamical effects and fluctuations of interaction-matrix elements for a ballistic quantum dot
2.
Mukherjee Abhishek; Alhassid Y.; Bertsch G. F.
Number-conserving theory of nuclear pairing gaps: A global assessment
3.
Billings Gabriel; Stone A. Douglas; Alhassid Y.
Signatures of exchange correlations in the thermopower of quantum dots
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4.
Rotter Stefan; Alhassid Y.
Strong-coupling limit of a Kondo spin coupled to a mesoscopic quantum dot: Effective Hamiltonian in the presence of exchange correlations
5.
Houcke K. Van; Rombouts S. M. A.; Heyde K.; Alhassid Y.
Microscopic calculation of symmetry projected nuclear level densities
6.
Schmidt S.; Alhassid Y.
Mesoscopic Competition of Superconductivity and Ferromagnetism: Conductance Peak Statistics for Metallic Grains
7.
Nakada H.; Alhassid Y.
Isospin-projected nuclear level densities by the shell model Monte Carlo method
8.
Alhassid Y.; Fang L.; Nakada H.
Heavy Deformed Nuclei in the Shell Model Monte Carlo Method
9.
Interaction matrix element fluctuations in ballistic quantum dots: Random wave model
10.
Alhassid Y.; Bertsch G. F.; Fang L.
New Effective Interaction for the Trapped Fermi Gas
11.
Rodríguez-Guzmán R.; Alhassid Y.; Bertsch G. F.
Effective shell model Hamiltonians from density functional theory: Quadrupolar and pairing correlations
12.
Rotter Stefan; Alhassid Y.; Türeci Hakan E.; Stone A. Douglas
Interacting Quantum Dot Coupled to a Kondo Spin: A Universal Hamiltonian Study
13.
Alhassid Y.
The shell model Monte Carlo approach to level densities: from medium‐mass to heavy deformed nuclei
14.
Interaction matrix element fluctuations in quantum dots
15.
Alhassid Y.; Weidenmüller H. A.; Wobst A.
Scrambling of Hartree-Fock levels as a universal Brownian-motion process
16.
Alhassid Y.; Liu S.; Nakada H.
Spin Projection in the Shell Model Monte Carlo Method and the Spin Distribution of Nuclear Level Densities
17.
Huertas-Hernando Daniel; Alhassid Y.
Extracting the ground-state spin of a quantum dot from the conductance peaks in a parallel magnetic field at a finite temperature
18.
Mocelj D.; Rauscher T.; Martínez-Pinedo G.; Langanke K.; Pacearescu L.; Faessler A.; Thielemann F.-K.; Alhassid Y.
Large-scale prediction of the parity distribution in the nuclear level density and application to astrophysical reaction rates
19.
Türeci Hakan E.; Alhassid Y.
Spin-orbit interaction in quantum dots in the presence of exchange correlations: An approach based on a good-spin basis of the universal Hamiltonian
20.
Alhassid Y.; Bertsch G. F.; Fang L.; Sabbey B.
Effective quadrupole-quadrupole interaction from density functional theory
21.
Alhassid Y.; Fyodorov Yan V.; Gorin T.; Ihra W.; Mehlig B.
Fano interference and cross-section fluctuations in molecular photodissociation
22.
Alhassid Y.; Bertsch G. F.; Fang L.; Liu S.
Nuclear moment of inertia and spin distribution of nuclear levels
23.
Disordered mesoscopic systems with interactions: Induced two-body ensembles and the Hartree-Fock approach
24.
Mesoscopic effects in quantum dots, nanoparticles and nuclei
25.
Statistical Properties of Nuclei by the Shell Model Monte Carlo Method
26.
Alhassid Y.; Rupp T.; Kaminski A.; Glazman L. I.
Linear conductance in Coulomb-blockade quantum dots in the presence of interactions and spin
27.
Nuclear level statistics: Extending shell model theory to higher temperatures
28.
Alhassid Y.; Rupp T.
Effects of Spin and Exchange Interaction on the Coulomb-Blockade Peak Statistics in Quantum Dots
29.
Alhassid Y.; Malhotra S.
Spin and interaction effects in quantum dots: A Hartree-Fock-Koopmans approach
30.
Hamoudi A.; Nazmitdinov R. G.; Shahaliev E.; Alhassid Y.
Statistical fluctuations of electromagnetic transition intensities and electromagnetic moments in pf-shell nuclei
31.
Rupp T.; Alhassid Y.; Malhotra S.
Signatures of inelastic scattering in Coulomb-blockade quantum dots
32.
Alhassid Y.; Wobst A.
Interaction effects on the conductance peak height statistics in quantum dots
33.
Liu S.; Alhassid Y.
Signature of a Pairing Transition in the Heat Capacity of Finite Nuclei
34.
The statistical theory of quantum dots
35.
Liu S.; Alhassid Y.; Nakada H.
Level densities by particle-number reprojection Monte Carlo methods
36.
Alhassid Y.; Jacquod Ph.; Wobst A.
Random matrix model for quantum dots and the conductance peak spacing distribution
37.
Finite temperature effects in Coulomb blockade quantum dots and signatures of spectral scrambling
38.
Patel S. R.; Duruöz C. I.; Stone A. D.; Alhassid Y.; Gökçedağ M.; Marcus C. M.; Stewart D. R.; Harris J. S.
Changing the Electronic Spectrum of a Quantum Dot by Adding Electrons
39.
Weak localization in the conductance peaks of Coulomb-blockade quantum dots
40.
Fyodorov Yan V.; Alhassid Y.
Photodissociation in quantum chaotic systems: Random-matrix theory of cross-section fluctuations
41.
Alhassid Y.; Gökçedağ M.; Stone A. D.
Conductance peak distributions in quantum dots at finite temperature: Signatures of the charging energy
42.
Alhassid Y.; Hormuzdiar J. N.; Whelan N. D.
Coulomb blockade conductance peak distributions in quantum dots and the crossover between orthogonal and unitary symmetry
43.
Kusnezov Dimitri; Alhassid Y.; Snover K. A.
Scaling Properties of the Giant Dipole Resonance Width in Hot Rotating Nuclei
44.
Alhassid Y.; Lewenkopf C. H.
Signatures of chaos in the statistical distribution of conductance peaks in quantum dots
45.
Alhassid Y.; Bertsch G. F.; Dean D. J.; Koonin S. E.
Shell Model Monte Carlo Studies of γ‐Soft Nuclei
46.
Alhassid Y.; Attias H.
Universal correlations of Coulomb‐blockade conductance peaks and the rotation scaling in quantum dots
47.
Universal parametric correlations of conductance peaks in quantum dots
48.
Statistical distributions of level widths and conductance peaks in irregularly shaped quantum dots
49.
Attias H.; Alhassid Y.
Gaussian random‐matrix process and universal parametric correlations in complex systems
50.
Drebi Z. M.; Snover K. A.; Charlop A. W.; Kaplan M. S.; Wells D. P.; Ye D.; Alhassid Y.
Spin‐induced shape changes in light‐medium mass compound nuclei
51.
Universal parametric correlations of eigenfunctions in chaotic and disordered systems
52.
Pato M. P.; Nunes C. A.; Lima C. L.; Hussein M. S.; Alhassid Y.
Deformed Gaussian orthogonal ensemble analysis of the interacting boson model
53.
Lauritzen B.; Alhassid Y.; Whelan N.
Nongeneric nuclear spectral fluctuations
54.
Whelan N.; Alhassid Y.; Leviatan A.
Partial dynamical symmetry and the suppression of chaos
55.
Alhassid Y.; Liu V.; Shao B.
Algebraic rotating‐frame approach to electron‐molecule scattering
56.
Alhassid Y.; Whelan N.
Onset of chaos and its signature in the spectral autocorrelation function
57.
Alhassid Y.; Levine R. D.
Spectral autocorrelation function in the statistical theory of energy levels
58.
Alhassid Y.; Vretenar D.
Chaos in nuclei with broken pairs
59.
Alhassid Y.; Shao B.
Algebraic eikonal approach to electron‐molecule scattering. II. Rotational‐vibrational excitations
60.
Algebraic eikonal approach to electron‐molecule scattering. I. Generalized formalism
61.
Algebraic rotating‐frame approach to electron‐molecule scattering; A hybrid calculation
62.
Alhassid Y.; Baktash C.; Goodman A. L.
Statistical nuclear behaviour: Finite‐temperature and chaotic phenomena
63.
Jalabert Rodolfo A.; Stone A. Douglas; Alhassid Y.
Statistical theory of Coulomb blockade oscillations: Quantum chaos in quantum dots
64.
Takigawa N.; Alhassid Y.; Balantekin A. B.
Quantal and thermal zero point motion formulae of barrier transmission probability
65.
Alhassid Y.; Novoselsky A.
Chaos in the low‐lying collective states of even‐even nuclei; Quantal fluctuations
66.
Gürsey Yusuf; Alhassid Y.
Lower bound on the critical energy for the onset of chaos and the chaotic dynamical aperture of large accelerators
67.
Chaotic properties of the interacting‐boson model; A discovery of a new regular region
68.
Chaos in the low‐lying collective states of even‐even nuclei; Classical limit
69.
Alhassid Y.; Novoselsky A.; Whelan N.
Chaos in the low‐lying collective states of even‐even nuclei
70.
Alhassid Y.; Bush B.
Orientation fluctuations and the angular distribution of the giant‐dipole‐resonance γ rays in hot rotating nuclei
71.
Wu J.; Alhassid Y.
The potential group approach and hypergeometric differential equations
72.
Stochastic approach to giant dipole resonances in hot rotating nuclei
73.
Wu J.; Alhassid Y.; Gürsey F.
Group theory approach to scattering. IV. Solvable potentials associated with SO(2,2)
74.
Nearest‐neighbor level spacing distributions; On the transition from the regular to the chaotic regimes
75.
Alhassid Y.; Manoyan J. M.; Levit S.
Simple systematics of the shape transitions in hot rare‐earth nuclei
76.
Alhassid Y.; Feingold M.
Statistical fluctuations of matrix elements in regular and chaotic systems
77.
Alhassid Y.; Bush B.; Levit S.
Thermal shape fluctuations, Landau theory, and giant dipole resonances in hot rotating nuclei
78.
Alhassid Y.; Hinds E. A.; Meschede D.
Dynamical symmetries of the perturbed hydrogen atom: The van der Waals interaction
79.
Wu J.; Iachello F.; Alhassid Y.
Group theory approach to scattering III. Realistic models
80.
Transition‐strength fluctuations and the onset of chaotic motion
81.
Alhassid Y.; Levit S.; Zingman J.
Universal features of shape transitions in hot rotating nuclei
82.
Alhassid Y.; Engel J.; Iachello F.
Algebraic approach to dissociation from bound states
83.
Frank A.; Alhassid Y.; Iachello F.
Contractions and expansions of Lie groups and the algebraic approach to scattering
84.
Alhassid Y.; Gürsey F.; Iachello F.
Group theory approach to scattering. II. The Euclidean connection
85.
Alhassid Y.; Iachello F.; Wu J.
Dynamic symmetries in scattering
86.
Alhassid Y.; Iachello F.; Levine R. D.
Resonance widths and positions by an algebraic approach
87.
Formal scattering theory by an algebraic approach
88.
Alhassid Y.; Zingman J.
Approximation methods for the nuclear thermodynamic functions and their validity in a solvable model
89.
Alhassid Y.; Engel J.; Wu J.
Algebraic approach to the scattering matrix
90.
Group theory approach to scattering
91.
Potential scattering, transfer matrix, and group theory
92.
Alhassid Yoram; Gai Moshe; Bertsch George F.
Radiative width of molecular‐cluster states
8
Iachello, Francesco
5
Stone, A. Douglas
Fang, L
Levine, Raphael
4
Wobst, André
Nakada, H
3
Liu, S
Bertsch, GF
Rupp, T
Malhotra, S
Kaplan, Lev
2
Fyodorov, Yan V.
Rotter, Stefan
Lewenkopf, Caio H.
Türeci, Hakan E.