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|arxiv = cond-mat/9909056 }}</ref> The value of the method lies in its ability to calculate the ''interacting'' pair distribution functions ''g''(''r'') at zero and finite temperatures. Comparison of the calculated ''g''(''r'') with results from Quantum Monte Carlo show remarkable agreement, even for very strongly correlated systems.
 
The interacting pair-distribution functions obtained from CHNC have been used to calculate the exchange-correlation energies, [[Landau parameter]]s of [[Fermi liquid]]s and other quantities of interest in many-body physics and [[density functional theory]], as well as in the theory of hot plasmas .<ref>M. W. C. Dharma-wardana, M. W. C.; and François Perrot,
Phys. Rev. B '''66''', 014110 (2002) </ref> <ref>R. Bredow, Th. Bornath, W.-D. Kraeft, M.W.C. Dharma-wardana and R. Redmer,
Contributions to Plasma Physics,
''55'', 222-229 (2015)
DOI 10.1002/ctpp.201400080
</ref>.
 
==See also==