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An internationally recognized nuclear theorist, Professor Pandharipande played a leading role in the development of the nuclear many-body problem. His contributions led to a state-of-the-art comprehensive, quantitative, and reliable theory of nuclei, neutron matter, and neutron stars, and were extended more generally to quantum liquids. His theoretical contributions set the agenda for experimental work, significantly advancing the use of electron scattering as a probe of nuclear structure. Working with his graduate students and collaborators, he initiated and carried out over several decades a successful research program to describe all nuclear systems in terms of the elementary two- and three-body interactions of the constituent nucleons. His pioneering variational Monte Carlo calculations have become the standard methods for the field.
In addition to his nuclear studies, Professor Pandharipande applied his expertise to condensed matter physics, where his research included Bose and Fermi helium liquids and drops, including structure, response, and elementary excitations. Most notably, he predicted structures subsequently observed in the dynamic response of Bose superfluid helium and demonstrated the important effects of the enhancement of the effective mass at the Fermi surface of Fermi liquid helium.
In addition to his nuclear studies, Professor Pandharipande applied his expertise to condensed matter physics, where his research included Bose and Fermi helium liquids and drops, including structure, response, and elementary excitations. Most notably, he predicted structures subsequently observed in the dynamic response of Bose superfluid helium and demonstrated the important effects of the enhancement of the effective mass at the Fermi surface of Fermi liquid helium.
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PHYSICAL REVIEW Cno. 2 (2005)
PHYSICAL REVIEW Cno. 1 (2000): 015201
Physical Review C (1996)
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