arXiv:nucl-th/0503066·v2·Nuclear Theory
Effects of particle-number conservation on heat capacity of nuclei
K. Esashika🇯🇵 · H. Nakada🇯🇵 · K. Tanabe🇯🇵
Abstract
By applying the particle-number projection to the finite-temperature BCS theory, the -shaped heat capacity, which has recently been claimed to be a fingerprint of the superfluid-to-normal phase transition in nuclei, is reexamined. It is found that the particle-number (or number-parity) projection gives -shapes in the heat capacity of nuclei which look qualitatively similar to the observed ones. These -shapes are accounted for as effects of the particle-number conservation on the quasiparticle excitations, and occur even when we keep the superfluidity at all temperatures by assuming a constant gap in the BCS theory. The present study illustrates significance of the conservation laws in studying phase transitions of finite systems.
Comments: RevTeX4, 12 pages including 5 figures (1 color figure), to be published in PRC