C M Chandrashekar
Institute of Mathematical Sciences, Okinawa Institute of Science and Technology Graduate University, University of Oxford, University of Waterloo, Bangalore University
About
I am a theoretical physicist working primarily in the area of Quantum Information Sciences. I am faculty member at the Institute of Mathematical Sciences, Chennai, India. Prior to this I was working as a researcher at Quantum Systems Unit of the Okinawa Institute of Science and Technology located in the southernmost island of Japan, Okinawa.
I completed my B.Sc from National College (Jayanagar) Bangalore, India. In 2002, I moved to University of Oxford, UK on Rhodes Scholarship. At Oxford, I worked on experimental Bose-Einstein condensates in Ultra-cold quantum matter group (Prof. C. J. Foot’s group), Clarendon Laboratory, Atomic and Laser Physics department. While at Oxford, my interest towards theoretical aspects of quantum information theory and quantum computing lead me to Waterloo, Canada which houses Institute for Quantum Computing and Perimeter Institute for Theoretical Physics. At Waterloo, I worked under the guidelines of Prof. R. Laflamme and completed my Ph.D in 2009.
Employment
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Institute of Mathematical Sciences Faculty2015 - Present
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Okinawa Institute of Science and Technology Graduate University Researcher2012 - 2015
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University College Cork National University of Ireland PostDoc2011 - 2012
Education
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University of Oxford M.Sc (Research) - Experimental Physics
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University of Waterloo Ph.D - Theoretical Physics
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University of Oxford M.Sc (Research) - Experimental Physics
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Bangalore University B.Sc (Physics, Chemistry, Mathematics)
Projects & Funding
Projects & funding information is unavailable.
Publications (34)
- Dirac Cellular Automaton from Split-step Quantum Walk Save
- Localization and limit laws of a three-state alternate quantum walk on a two-dimensional lattice Save
- Localized quantum walks as secured quantum memory Save
- Limit distributions for different forms of four-state Quantum walks on a two-dimensional lattice Save
- Noise-enhanced quantum transport on a closed loop using quantum walks Save
- Quantum percolation and transition point of a directed discrete-time quantum walk Save
- Single photons in an imperfect array of beam-splitters: interplay between percolation, backscattering and transient localization Save
- Two-component Dirac-like Hamiltonian for generating quantum walk on one-, two-and three-dimensional lattices Save
- Enhancement of geometric phase by frustration of decoherence: A Parrondo-like effect Save
- Decoherence in two-dimensional quantum walks using four- and two-state particles Save