Paul Cadden-Zimansky, Ph.D.

Affiliations: 
2008 Physics and Astronomy Northwestern University, Evanston, IL 
Area:
Mesoscopic systems: hybrid superconductor, ferromagnet and normal metal systems; complex oxides, unconventional superconductivity; low-temperature scanning-force microscopy.
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"Paul Cadden-Zimansky"
Mean distance: 4517.33
 
Cross-listing: Astronomy Tree

Parents

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Venkat Chandrasekhar grad student 2008 Northwestern
 (Nonlocal coherence in normal metal -superconductor nanostructures.)
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Publications

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Maher P, Wang L, Gao Y, et al. (2014) Bilayer graphene. Tunable fractional quantum Hall phases in bilayer graphene. Science (New York, N.Y.). 345: 61-4
Zhao Y, Cadden-Zimansky P, Ghahari F, et al. (2012) Magnetoresistance measurements of graphene at the charge neutrality point. Physical Review Letters. 108: 106804
Cadden-Zimansky P, Wei J, Chandrasekhar V. (2012) Coherent nonlocal correlations in Andreev interferometers New Journal of Physics. 14
Young AF, Dean CR, Wang L, et al. (2012) Spin and valley quantum Hall ferromagnetism in graphene Nature Physics. 8: 550-556
Ghahari F, Zhao Y, Cadden-Zimansky P, et al. (2011) Measurement of the ν=1/3 fractional quantum hall energy gap in suspended graphene. Physical Review Letters. 106: 046801
Wei J, Cadden-Zimansky P, Chandrasekhar V, et al. (2011) Thermal fluctuations and flux-tunable barrier in proximity Josephson junctions Physical Review B - Condensed Matter and Materials Physics. 84
Tung LC, Cadden-Zimansky P, Qi J, et al. (2011) Measurement of graphite tight-binding parameters using high-field magnetoreflectance Physical Review B - Condensed Matter and Materials Physics. 84
Dean CR, Young AF, Cadden-Zimansky P, et al. (2011) Multicomponent fractional quantum Hall effect in graphene Nature Physics. 7: 693-696
Henriksen EA, Cadden-Zimansky P, Jiang Z, et al. (2010) Interaction-induced shift of the cyclotron resonance of graphene using infrared spectroscopy. Physical Review Letters. 104: 067404
Zhao Y, Cadden-Zimansky P, Jiang Z, et al. (2010) Symmetry breaking in the zero-energy landau level in bilayer graphene Physical Review Letters. 104
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