Ground State of Liquid Helium (Mass 4)

Abstract
The wave function describing the ground state of a boson system is approximated by the function Ψ=Πexp[12u(rij)]. The superposition approximation is then used to derive a linear, inhomogeneous integral equation for dudr in which the only other quantities occuring are the experimentally observed two-particle distribution function g(r) and its first derivative. A numerical solution for He4 is computed and compared with the explicit approximate solution derived by Abe. Using the computed u(r) and a proper smooth extrapolation of g(r) into the region below the apparent cutoff at r=2.34 A, the kinetic energy of liquid He4 at absolute zero is estimated at 2.91×1015 ergs/atom.

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