International audienceThis Letter provides the solution to a yet unsolved basic problem of solid state physics: the ground state energy of an arbitrary number of Cooper pairs interacting via the Bardeen-Cooper-Schrieffer potential. We here break a 50 yr old math problem by analytically solving Richardson-Gaudin equations which give the exact energy of these N pairs via N parameters coupled through N nonlinear equations. Our result fully supports the standard BCS result obtained for a pair number equal to half the number of states feeling the potential. More importantly, it shows that the interaction part of the N-pair energy depends on N as N(N-1) only from N=1 to the dense regime, a result which evidences that Cooper pairs interact via Pau...
The Cooper pair (pairon) field operator psi(dagger) (r, t) changes, following Heisenberg's equation ...
The Pairing Model hamiltonian was solved exactly by Richardson in the six-ties. We present here the ...
4 pages, 4 figuresA functional theory based on single-particle occupation numbers is developed for p...
This Letter provides the solution to a yet unsolved basic problem of Solid State Physics: the ground...
paper n° 164International audienceWe provide a compact expression of the ground-state energy of N-Co...
We approach the analytical resolution of Richardson’s equations from which the exact energy of N Coo...
9 pages, no figures, slightly modified versionInternational audienceWhile the one-Cooper pair proble...
Using the Bethe-Salpeter (BS) equation, Cooper pairing can be generalized to include contributions f...
We address the problem of two pairs of fermions living on an arbitrary number of single-particle lev...
Richardson approach provides an exact solution of the pairing Hamiltonian. This Hamiltonian is chara...
The binding energy of Cooper pairs has been calculated for the case of d-wave symmetry of the superc...
In a recent paper [1] we studied the behavior of the pairing gaps ∆F as a function of the Fermi mome...
The exact solution of the reduced pairing Hamiltonian is compared to the BCS mean field approximatio...
In a recent paper [1] we studied the behavior of the pairing gaps ΔF as a function of the Fermi mome...
We consider the normal phase of a strongly interacting Fermi gas, which can have either an equal or ...
The Cooper pair (pairon) field operator psi(dagger) (r, t) changes, following Heisenberg's equation ...
The Pairing Model hamiltonian was solved exactly by Richardson in the six-ties. We present here the ...
4 pages, 4 figuresA functional theory based on single-particle occupation numbers is developed for p...
This Letter provides the solution to a yet unsolved basic problem of Solid State Physics: the ground...
paper n° 164International audienceWe provide a compact expression of the ground-state energy of N-Co...
We approach the analytical resolution of Richardson’s equations from which the exact energy of N Coo...
9 pages, no figures, slightly modified versionInternational audienceWhile the one-Cooper pair proble...
Using the Bethe-Salpeter (BS) equation, Cooper pairing can be generalized to include contributions f...
We address the problem of two pairs of fermions living on an arbitrary number of single-particle lev...
Richardson approach provides an exact solution of the pairing Hamiltonian. This Hamiltonian is chara...
The binding energy of Cooper pairs has been calculated for the case of d-wave symmetry of the superc...
In a recent paper [1] we studied the behavior of the pairing gaps ∆F as a function of the Fermi mome...
The exact solution of the reduced pairing Hamiltonian is compared to the BCS mean field approximatio...
In a recent paper [1] we studied the behavior of the pairing gaps ΔF as a function of the Fermi mome...
We consider the normal phase of a strongly interacting Fermi gas, which can have either an equal or ...
The Cooper pair (pairon) field operator psi(dagger) (r, t) changes, following Heisenberg's equation ...
The Pairing Model hamiltonian was solved exactly by Richardson in the six-ties. We present here the ...
4 pages, 4 figuresA functional theory based on single-particle occupation numbers is developed for p...