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BerkeleyGW: A massively parallel computer package for the calculation of the quasiparticle and optical properties of materials and nanostructures.

, , , , , and . Comput. Phys. Commun., 183 (6): 1269-1289 (2012)

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BerkeleyGW: A massively parallel computer package for the calculation of the quasiparticle and optical properties of materials and nanostructures., , , , , and . Comput. Phys. Commun., 183 (6): 1269-1289 (2012)Small phonon contribution to the photoemission kink in the copper oxide superconductors, , and . Nature (London), (April 2008)Computational design of direct-bandgap semiconductors that lattice-match silicon, , , , and . Nature, 409 (6816): 69--71 (January 2001)Prediction of a pure-carbon planar covalent metal, , , and . Phys. Rev. B, 53 (20): R13303--R13305 (May 1996)Predicting High-Pressure and Excited-State Properties of Real Materials., , and . Int. J. High Perform. Comput. Appl., 5 (1): 21-33 (1991)Special Points in the Brillouin Zone, and . Phys. Rev. B, 8 (12-15): 5747-5753 (December 1973)Superconductivity and Phonon Softening, and . Phys. Rev. Lett., 29 (24): 1593--1596 (December 1972)Reflectivities and Electronic Band Structures of CdTe and HgTe, , , , and . Phys. Rev. B, 5 (8): 3058--3064 (April 1972)Electronic band structures for zinc-blende and wurtzite CdS, , and . Phys. Rev. B, 28 (8): 4736--4743 (October 1983)EPW: A program for calculating the electron-phonon coupling using maximally localized Wannier functions., , , , , and . Comput. Phys. Commun., 181 (12): 2140-2148 (2010)