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Krishnendu Sengupta

Researcher at Indian Association for the Cultivation of Science

Publications -  131
Citations -  6113

Krishnendu Sengupta is an academic researcher from Indian Association for the Cultivation of Science. The author has contributed to research in topics: Josephson effect & Quantum phase transition. The author has an hindex of 30, co-authored 120 publications receiving 5015 citations. Previous affiliations of Krishnendu Sengupta include Saha Institute of Nuclear Physics & Harish-Chandra Research Institute.

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Colloquium: Nonequilibrium dynamics of closed interacting quantum systems

TL;DR: In this paper, the authors give an overview of recent theoretical and experimental progress in the area of nonequilibrium dynamics of isolated quantum systems, particularly focusing on quantum quenches: the temporal evolution following a sudden or slow change of the coupling constants of the system Hamiltonian.
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Fractional ac Josephson effect in p- and d-wave superconductors

TL;DR: In this paper, the subgap Andreev bound states produced a periodic relation between the Josephson current I and the phase difference I, where I is the dc voltage.
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Quench dynamics across quantum critical points

TL;DR: In this paper, the authors study the quantum dynamics of a number of model systems as their coupling constants are changed rapidly across a quantum critical point, and obtain numerical results on the evolution of the density wave order as the potential gradient is scanned across the quantum critical points.
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Competing density-wave orders in a one-dimensional hard-boson model

TL;DR: In this paper, the authors describe the zero-temperature phase diagram of a model of bosons, occupying sites of a linear chain, which obey a hard-exclusion constraint: any two nearest-neighbor sites may have at most one boson.

Fractional ac Josephson effect in p- and d-wave superconductors

TL;DR: In this paper, the subgap Andreev bound states of Josephson junctions between two px-wave or two d-wave superconductors were found to produce a 4π-periodic relation between the Josephson current and the phase difference.