Wavefunction structure in quantum many-fermion systems with $k$-body
interactions: conditional $q$-normal form of strength functions
- URL: http://arxiv.org/abs/2011.05799v3
- Date: Mon, 15 Nov 2021 19:16:37 GMT
- Title: Wavefunction structure in quantum many-fermion systems with $k$-body
interactions: conditional $q$-normal form of strength functions
- Authors: V.K.B. Kota, Manan Vyas
- Abstract summary: For finite quantum many-particle systems modeled with say $m$ fermions in $N$ single particle states, the wavefunction structure is studied using random matrix theory.
It is shown that the first four moments of $F_kappa(E)$ are essentially same as that of the conditional $q$-normal distribution.
- Score: 0.40357531559576965
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: For finite quantum many-particle systems modeled with say $m$ fermions in $N$
single particle states and interacting with $k$-body interactions ($k \leq m$),
the wavefunction structure is studied using random matrix theory. Hamiltonian
for the system is chosen to be $H=H_0(t) + \lambda V(k)$ with the unperturbed
$H_0(t)$ Hamiltonian being a $t$-body operator and $V(k)$ a $k$-body operator
with interaction strength $\lambda$. Representing $H_0(t)$ and $V(k)$ by
independent Gaussian orthogonal ensembles (GOE) of random matrices in $t$ and
$k$ fermion spaces respectively, first four moments, in $m$-fermion spaces, of
the strength functions $F_\kappa(E)$ are derived; strength functions contain
all the information about wavefunction structure. With $E$ denoting the $H$
energies or eigenvalues and $\kappa$ denoting unperturbed basis states with
energy $E_\kappa$, the $F_\kappa(E)$ give the spreading of the $\kappa$ states
over the eigenstates $E$. It is shown that the first four moments of
$F_\kappa(E)$ are essentially same as that of the conditional $q$-normal
distribution given in: P.J. Szabowski, Electronic Journal of Probability {\bf
15}, 1296 (2010). This naturally gives asymmetry in $F_\kappa(E)$ with respect
to $E$ as $E_\kappa$ increases and also the peak value changes with $E_\kappa$.
Thus, the wavefunction structure in quantum many-fermion systems with $k$-body
interactions follows in general the conditional $q$-normal distribution.
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