arXiv · cond-mat/9701041
Parity Effect in Ground State Energies of Ultrasmall Superconducting Grains
Abstract
We study the superconductivity in small grains in the regime when the quantum level spacing $δ\varepsilon$ is comparable to the gap $Δ$. As $δ\varepsilon$ is increased, the system crosses over from superconducting to normal state. This crossover is studied by calculating the dependence of the ground state energy of a grain on the parity of the number of electrons. The states with odd numbers of particles carry an additional energy $Δ_P$, which shows non-monotonic dependence on $δ\varepsilon$. Our predictions can be tested experimentally by studying the parity-induced alternation of Coulomb blockade peak spacings in grains of different sizes.
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K. A. Matveev, A. I. Larkin. 1997-01-08. Parity Effect in Ground State Energies of Ultrasmall Superconducting Grains. https://doi.org/10.1103/physrevlett.78.3749
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