Henok T. Mebrahtu, Ph.D.
Affiliations: | Physics | Duke University, Durham, NC |
Area:
Low Temperature, Condensed Matter, Nanosicence, Nanotubes, Graphene, DNA self assemblyGoogle:
"Henok Mebrahtu"Mean distance: 15.26
Parents
Sign in to add mentorGleb A. Finkelstein | grad student | 2012 | Duke | |
(Electron transport through carbon nanotube quantum dots in a dissipative environment.) |
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Publications
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Borzenets IV, Coskun UC, Mebrahtu HT, et al. (2013) Phonon bottleneck in graphene-based Josephson junctions at millikelvin temperatures. Physical Review Letters. 111: 027001 |
Mebrahtu HT, Borzenets IV, Zheng H, et al. (2013) Observation of majorana quantum critical behaviour in a resonant level coupled to a dissipative environment Nature Physics. 9: 732-737 |
Mebrahtu HT, Borzenets IV, Liu DE, et al. (2012) Quantum phase transition in a resonant level coupled to interacting leads. Nature. 488: 61-4 |
Borzenets IV, Coskun UC, Mebrahtu H, et al. (2012) Pb-Graphene-Pb josephson junctions: Characterization in magnetic field Ieee Transactions On Applied Superconductivity. 22 |
Mebrahtu H, Borzenets I, Bomze Y, et al. (2012) Observation of unitary conductance for resonant tunneling with dissipation Journal of Physics: Conference Series. 400 |
Bomze Y, Borzenets I, Mebrahtu H, et al. (2010) Two-stage Kondo effect and Kondo-box level spectroscopy in a carbon nanotube Physical Review B - Condensed Matter and Materials Physics. 82 |
Bomze Y, Mebrahtu H, Borzenets I, et al. (2009) Resonant tunneling in a dissipative environment Physical Review B - Condensed Matter and Materials Physics. 79 |
Coskun UC, Mebrahtu H, Huang PB, et al. (2008) Single-electron transistors made by chemical patterning of silicon dioxide substrates and selective deposition of gold nanoparticles Applied Physics Letters. 93 |