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Proximity effect

File Cooper Pair Mediated Coherence Between Two Normal Metals
P. Cadden-Zimansky, J. Wei, and V. Chandrasekhar, Nature Physics, 5, 393 (2009).
File Thermal transport in superconductor/normal-metal structures
Venkat Chandrasekhar, Superconducting Science and Technology 22, 083001 (2009)
File Thermopower oscillation symmetries in a double-loop Andreev interferometer
P. Cadden-Zimansky , Z. Jiang, V. Chandrasekhar, Physica E 40 155 (2007).
File PhD Thesis: Paul Cadden-Zimansky
Nonlocal Coherence in Normal Metal-Superconductor Nanostructures
File Observation of large h/2e and h/4e oscillations in a proximity dc superconducting quantum interference device
J. Wei, P. Cadden-Zimansky and V. Chandrasekhar, Applied Physics Letters 92, 102502 (2008)
File Reentrance effect in normal-metal/superconducting hybrid loops
C.-J. Chien and V. Chandrasekhar, Physical Review B 60, 15356 (1999)
File An introduction to the quasiclassical theory of superconductivity for diffusive proximity-coupled systems
Venkat Chandrasekhar, Chapter in The Physics of Superconductors, Vol. II, edited by Bennemann and Ketterson (2004).
File Magnetoresistance of proximity-coupled Au wires
D. A. Dikin, M. J. Black, and V. Chandrasekhar, Physical Review Letters 87, 187003 (2001)
File Proximity effect thermometer for local electron temperature measurements on mesoscopic samples
J. Aumentado, V. Chandrasekhar, J. Eom, P. M. Baldo and L. E. Rehn, Applied Physics Letters 75, 3554 (1999)
File Nonlocal correlations in normal-metal superconducting systems
P. Cadden-Zimansky and V. Chandrasekhar, Physical Review Letters 97, 237003 (2006)
File Thermal conductance of Andreev interferometers
Z. Jiang and V. Chandrasekhar, Physical Review Letters 94, 147002 (2005)
File Quantitative measurements of the thermal resistance of Andreev interferometers
Z. Jiang and V. Chandrasekhar, Physical Review B 72, 020502(R) (2005)
File Phase dependent thermopower in Andreev interferometers
Jonghwa Eom, Chen-Jung Chien, and Venkat Chandrasekhar, Physical Review Letters 81, 437 (1998)
File Nonequilibrium transport in mesoscopic normal-metal–superconducting structures
C.-J. Chien and V. Chandrasekhar, Physical Review B 60, 3655 (1999)
File Charge imbalance, crossed Andreev reflection and elastic co-tunneling in ferromagnet/superconductor/normal-metal structures
P. Cadden-Zimansky, Z. Jiang and V. Chandrasekhar, New Journal of Physics 9, 116 (2007)
File Thermopower of mesoscopic normal-metal/superconductor heterostructures
Jonghwa Eom, Chen-jung Chien and Venkat Chandrasekhar, Journal of Low Temperature Physics 118, 617 (2000)
File Mesoscopic ferromagnet-superconductor junctions and the proximity effect
J. Aumentado and V. Chandrasekhar, Physical Review B 64, 54505 (2001)
File Transport through ferromagnet/superconductor interfaces
Zhigang Jiang, Jose Aumentado, Wolfgang Belzig and Venkat Chandrasekhar, in Theory of Quantum Transport in Metallic and Hybrid Nanostructures, NATO Science Series, Vol. 230 (2006)
File Thermoelectric effects in normal metal/superconductor interface structures
J. Eom, C.-J. Chien and V. Chandrasekhar, Superlattices and microstructures 25, 733 (1999)
File Magnetoresistance of proximity-coupled Au wires
D. A. Dikin, M. J. Black, and V. Chandrasekhar, Physical Review Letters 87, 187003 (2001)
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Recent Publications

Thermal transport in superconductor/normal-metal structures, Venkat Chandrasekhar, Superconducting Science and Technology, 22, 083001 (2009) [pdf]

Cooper-pair-mediated coherence between two normal metals, P. Cadden-Zimansky, J.Wei and V. Chandrasekhar, Nature Physics, 5, 393 (2009)

Nonlocal Coherence in Normal Metal-Superconductor Nanostructures, Paul Cadden-Zimansky, PhD Thesis [pdf]

Pseudogap Formation in the Metallic State of LSMO Thin Films, Udai Raj Singh, Anjan K. Gupta, Goutam Sheet, Venkat Chandrasekhar, H.W. Jang and C.B. Eom, Appl. Phys. Lett. 93, 212503 (2008) [pdf]

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