Molecular Optoelectronics

Molecular Spintronics

Representative publications:

  1. BulletK.Miwa, H.Imada, M.Imai-Imada,  K.Kimura, M.Galperin, and Y.Kim. Many-body States Description of Single-molecule Electroluminescence Driven by Scanning Tunneling Microscope. Nano Lett. 19, 2803-2811 (2019).

  2. BulletM.Galperin. Photonics and spectroscopy in nanojunctions: A theoretical insight. Chem. Soc. Rev. 46, 4000-4019 (2017) [Review].

  3. BulletA.J.White, S.Tretiak, and M.Galperin. Raman scattering in molecular junctions: A pseudoparticle formulation. Nano Lett. 14, 699-703 (2014).

  4. BulletD.Rai and M.Galperin. Electrically driven spin currents in DNA. J. Phys. Chem. C 117, 13730-13737 (2013).

  5. BulletB.O.Jahn, H.Ottosson, M.Galperin, and J.Fransson. Organic single molecular structures for light induced spin-pump devices. ACS Nano 7, 1064-1071 (2013).

  6. BulletA.J.White, B.D.Fainberg, and M.Galperin. Collective plasmon-molecule excitations in nanojunctions: Quantum consideration. J. Phys. Chem. Lett. 3, 2738-2743 (2012).

  7. BulletM.Galperin and A.Nitzan. Molecular optoelectronics: the interaction of molecular conduction junctions with light. Phys. Chem. Chem. Phys. 14, 9421-9438 (2012) [Perspective].

  8. BulletM.Galperin and A.Nitzan. Raman scattering from biased molecular conduction junctions: The electronic background and its temperature.  Phys. Rev. B 84, 195325 (2011).

  9. BulletT.-H.Park and M.Galperin. Charge transfer contribution to surface-enhanced Raman scattering in a molecular junction: Time-dependent correlations. Phys. Rev. B 84, 075447 (2011).

  10. BulletM.Sukharev and M.Galperin. Transport and optical response of molecular junctions driven by surface plasmon polaritons. Phys. Rev. B 81, 165307 (2010).

  11. BulletM.Galperin, M.A.Ratner, and A.Nitzan. Raman scattering in Current-Carrying Molecular Junctions. J. Chem. Phys. 130, 144109 (2009).