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Emil Prodan

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Yeshiva University, New York, .

E-mail: trimite un mesaj.

Pagina web a instituţiei: http://www.yu.edu
Pagina web personala: http://www.yu.edu/faculty/prodan/

Nascut(a) in: 1971

Interese: mathematical physics, computational physics, theoretical physics, solid state and quantum mechanics

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Assistant Professor, Yeshiva University (New York). Main research interests: Materials science; Electronic Structure Calculations. Recent activities: Studies on the thermodynamic limit for different models of the condensed matter such as Hartree, Hartree-Fock and Density Functional Theory. Studies on the analytic structure of Bloch functions and on the asymptotic behavior of different correlation function in crystaline systems (under the supervision of Prof. Walter Kohn). Studies on the algebraic Bethe ansatz, non-abelian statistics in the fractional quantum Hall systems, topological quantum qubits (under the supervision of Prof. Duncan Haldane); charge and spin transport through molecular and nano-junctions (under the supervision of Prof. Roberto Car).

Publicații selectate:

* E. Prodan, Analytic structure of Bloch functions for linear molecular chains, Phys. Rev. B, 73, 2006.

* E. Prodan, Nearsightedness of electronic matter in one dimension, Phys. Rev. B, 73, 2006.

* E. Prodan and W. Kohn, Nearsightedness of Electronic Matter, PNAS, 102, 2005.

* E. Prodan, Symmetry breaking in the self-consisten Kohn-Sham equations, J. Phys. A: Math. and General, 38, 2005.

* Nordlander P and Prodan E, Plasmon hybridization in nanoparticles near metallic surfaces, Nano Letters, 4, 2004.

* Nordlander P, Oubre C, Prodan E, Li K, Stockman MI, Plasmon hybridizaton in nanoparticle dimers, Nano Letters, 4, 2004.

* E. Prodan and P. Nordlander, Plasmon Hybridization in Spherical Nanoparticles, Journal of Chemical Physics, 120, 2004.

* E. Prodan, C. Radloff, N. J. Halas and P. Nordlander, A Hybridization Model for the Plasmon Response of Complex Nanostructures, Science, 302, 2003.

* E. Prodan, P. Nordlander and N.J. Halas, Electronic Structure and Optical Properties of Gold Nanoshells, Nano Letters, 3, 2003.

* E. Prodan and P. Nordlander, On the Kohn-Sham equations with periodic background potentials, J. Stat. Phys., 111, 2003.

* E. Prodan, P. Nordlander and N.J. Halas, Efects of dielectric screening on the optical properties of metallic nanoshells, Chem. Phys. Lett., 368, 2003.

* P. Nordlander and E. Prodan, Optical properties of metallic nanoshells, SPIE Proc., 4810, 2002.

* E. Prodan and P. Nordlander, The effect of a dielectric core and embedding medium on the polarizability of metallic nanoshells, Chem. Phys. Lett., 360, 2002.

* J. H Miller, Jr., C. Ordonez and E. Prodan, Time-correlated tunneling in charge and spin density waves, Phys. Rev. Lett., 84, 2000.

* E. Prodan and P. Nordlander, Electronic structure and polarizability of metallic nanoshells, Chem. Phys. Lett., 352, 2002.

* E. Prodan and P. Nordlander, Exchange and correlations effects in small metallic nanoshells, Chem. Phys. Lett., 349, 2001.

* C. Prodan and E. Prodan, The dielectric behaviour of living cell suspensions, J. Phys. D: Appl. Phys., 32, 1998.

* E. Prodan, Spontaneous transitions in quantum mechanics, J. Phys. A: Math. Gen., 32, 1999.

* E. Prodan, Cluster expansion for P(fi)_{2}: explicit estimates, J. Math. Phys., 41, 2000.

* E. Prodan, Transfer matrices for scalar fields on curved spaces, J. Math. Phys., 40, 1999.

* E. Prodan, The Laplace-Beltrami operator on surfaces with axial symmetry, J. Phys. A: Math. Gen., 31, 1998.

* E. Prodan and P. Nordlander, Hartree approximation III: Symmetry breaking, J. Math. Phys., 42, 2001.

* E. Prodan and P. Nordlander, Hartree approximation II: The thermodynamic limit, J. Math. Phys., 42, 2001.

* E. Prodan and P. Nordlander, Hartree approximation I: The fixed point approach, J. Math. Phys., 42, 2001.