Theodore Reber, Ph.D.

Affiliations: 
2011 Physics University of Colorado, Boulder, Boulder, CO, United States 
Area:
Optics Physics, Condensed Matter Physics
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"Theodore Reber"
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Daniel S. Dessau grad student 2011 CU Boulder
 (The Momentum Resolved Density of States: Pair-forming and Pair-Breaking in the Cuprate Superconductors.)
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Publications

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Li H, Zhou X, Parham S, et al. (2018) Coherent organization of electronic correlations as a mechanism to enhance and stabilize high-T C cuprate superconductivity. Nature Communications. 9: 26
Cao Y, Wang Q, Waugh JA, et al. (2016) Hallmarks of the Mott-metal crossover in the hole-doped pseudospin-1/2 Mott insulator Sr2IrO4. Nature Communications. 7: 11367
Reber TJ, Plumb NC, Waugh JA, et al. (2014) Effects, determination, and correction of count rate nonlinearity in multi-channel analog electron detectors. The Review of Scientific Instruments. 85: 043907
Rameau JD, Reber TJ, Yang HB, et al. (2014) Nearly perfect fluidity in a high-temperature superconductor Physical Review B - Condensed Matter and Materials Physics. 90
Parham S, Reber TJ, Cao Y, et al. (2013) Pair breaking caused by magnetic impurities in the high-temperature superconductor Bi2.1Sr1.9Ca(Cu1-xFe x)2Oy Physical Review B - Condensed Matter and Materials Physics. 87
Reber TJ, Plumb NC, Cao Y, et al. (2013) Prepairing and the "filling" gap in the cuprates from the tomographic density of states Physical Review B - Condensed Matter and Materials Physics. 87
Plumb NC, Reber TJ, Iwasawa H, et al. (2013) Large momentum-dependence of the main dispersion 'kink' in the high-T c superconductor Bi2Sr2CaCu2O 8+δ New Journal of Physics. 15
Cao Y, Waugh JA, Zhang XW, et al. (2013) Mapping the orbital wavefunction of the surface states in three-dimensional topological insulators Nature Physics. 9: 499-504
Reber TJ, Plumb NC, Sun Z, et al. (2012) The origin and non-quasiparticle nature of Fermi arcs in Bi 2 Sr 2 CaCu 2 O8+∞ Nature Physics. 8: 606-610
Plumb NC, Reber TJ, Koralek JD, et al. (2010) Low-energy (<10  meV) feature in the nodal electron self-energy and strong temperature dependence of the Fermi velocity in Bi{2}Sr{2}CaCu{2}O{8+δ}. Physical Review Letters. 105: 046402
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