C.M. Brown, L. Cristofolini, et al.
Chemistry of Materials
The correlation energy of the anyon gas is expressed in terms of a coupling-constant integral involving two-body and three-body correlation functions. In the random-phase approximation, the dominant two-body contributions involve the energy difference between the collective modes of the interacting and noninteracting systems, which is evaluated numerically for the Bose gas and for semions. © 1993 The American Physical Society.
C.M. Brown, L. Cristofolini, et al.
Chemistry of Materials
R.D. Murphy, R.O. Watts
Journal of Low Temperature Physics
S.F. Fan, W.B. Yun, et al.
Proceedings of SPIE 1989
Xikun Hu, Wenlin Liu, et al.
IEEE J-STARS