Shailesh Chandrasekharan, PhD

Affiliations: 
Physics Duke University, Durham, NC 
Area:
Theory, Lattice QCD
Website:
http://fds.duke.edu/db/aas/Physics/faculty/sch
Google:
"Shailesh Chandrasekharan"
Bio:

http://inspirehep.net/record/1014065?ln=en

Mean distance: 12.51
 
SNBCP

Parents

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Norman Howard Christ grad student 1990-1995 Columbia
 (Critical behavior at the QCD phase transition)

Children

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Abhijit C. Mehta research assistant 2005- Duke
Fu-Jiun Jiang grad student 2006 Duke
D. J. Cecile grad student 2008 Duke
Venkitesh Ayyar grad student 2010-2016 Duke
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Publications

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Maiti S, Banerjee D, Chandrasekharan S, et al. (2024) Asymptotic Freedom at the Berezinskii-Kosterlitz-Thouless Transition without Fine-Tuning Using a Qubit Regularization. Physical Review Letters. 132: 041601
Liu H, Huffman E, Chandrasekharan S, et al. (2022) Quantum Criticality of Antiferromagnetism and Superconductivity with Relativity. Physical Review Letters. 128: 117202
Bhattacharya T, Buser AJ, Chandrasekharan S, et al. (2021) Qubit Regularization of Asymptotic Freedom. Physical Review Letters. 126: 172001
Huffman E, Chandrasekharan S. (2020) Fermion-bag inspired Hamiltonian lattice field theory for fermionic quantum criticality Physical Review D. 101
Frank J, Huffman E, Chandrasekharan S. (2020) Emergence of Gauss' law in a Z2 lattice gauge theory in 1 + 1 dimensions Physics Letters B. 806: 135484
Banerjee D, Chandrasekharan S, Orlando D, et al. (2019) Conformal Dimensions in the Large Charge Sectors at the O(4) Wilson-Fisher Fixed Point. Physical Review Letters. 123: 051603
Singh H, Chandrasekharan S. (2019) Few-body physics on a spacetime lattice in the worldline approach Physical Review D. 99
Singh H, Chandrasekharan S. (2019) A qubit regularization of the $O(3)$ sigma model Physical Review D. 100
Banerjee D, Chandrasekharan S, Orlando D. (2018) Conformal Dimensions via Large Charge Expansion. Physical Review Letters. 120: 061603
Ayyar V, Chandrasekharan S, Rantaharju J. (2018) Benchmark results in the 2D lattice Thirring model with a chemical potential Physical Review D. 97
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