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Reliability of Hybrid Functionals in Predicting Band Gaps, , and . Phys. Rev. Lett., 107 (21): 216806 (November 2011)Prediction of a pure-carbon planar covalent metal, , , and . Phys. Rev. B, 53 (20): R13303--R13305 (May 1996)Conjugate-Gradient Based Electronic Structure Calculations on the Cray T3E and SGI PowerChallenge., , and . PPSC, SIAM, (1997)Electron correlation in semiconductors and insulators: Band gaps and quasiparticle energies, and . Phys. Rev. B, 34 (8): 5390--5413 (October 1986)Optimizing Excited-State Electronic-Structure Codes for Intel Knights Landing: A Case Study on the BerkeleyGW Software., , , , , , , and . ISC Workshops, volume 9945 of Lecture Notes in Computer Science, page 402-414. (2016)Narrow-band high-lying excitons with negative-mass electrons in monolayer WSe$_2$, , , , , , , , , and 8 other author(s). Nat. Commun., (Sep 17, 2021)EPW: A program for calculating the electron-phonon coupling using maximally localized Wannier functions., , , , , and . Comput. Phys. Commun., 181 (12): 2140-2148 (2010)Accelerating large-scale excited-state GW calculations on leadership HPC systems., , , , , and . SC, page 4. IEEE/ACM, (2020)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)