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Mathematics

D-Index
44
Citations
8661
World Ranking
1572
National Ranking
17

Research.com Recognitions

  • 2006 - Fellow, The World Academy of Sciences

Overview

Deepak Dhar is affiliated with the Indian Institute of Science Education and Research Pune in India. Their research primarily focuses on the fields of Physics and Astronomy as well as Mathematics, with publications covering specialized subfields such as Condensed Matter Physics, Mathematical Physics, Materials Chemistry, Statistical and Nonlinear Physics, and Nuclear and High Energy Physics.

The scientist's main topics of work include Theoretical and Computational Physics, Stochastic Processes and Statistical Mechanics, Material Dynamics and Properties, Complex Network Analysis Techniques, Markov Chains and Monte Carlo Methods, Quantum and Superfluid Helium Dynamics, and Phase Equilibria and Thermodynamics.

Frequent coauthors in their research include:

  • R. Rajesh
  • Geet Rakala
  • Kedar Damle
  • Aanjaneya Kumar
  • Dipanjan Mandal

Key publication venues where their work has appeared are:

  • arXiv (Cornell University)
  • Physical review. E
  • Journal of Statistical Mechanics Theory and Experiment
  • Physical review. B./Physical review. B
  • Acta Physica Polonica B

Selected recent papers authored or coauthored by Deepak Dhar include:

  • Entropy of fully packed hard rigid rods on d-dimensional hypercubic lattices, 2021, Physical review. E
  • Density relaxation in conserved Manna sandpiles, 2021, Physical review. E
  • Exact results for interacting hard rigid rotors on a d-dimensional lattice, 2022, Journal of Statistical Mechanics Theory and Experiment
  • Subspace-restricted thermalization in a correlated-hopping model with strong Hilbert space fragmentation characterized by irreducible strings, 2024, Physical review. B./Physical review. B
  • Sequence of phase transitions in a model of interacting rods, 2022, Physical review. E

Deepak Dhar was awarded the title of Fellow by The World Academy of Sciences in 2006.

Best Publications

  • Self-organized critical state of sandpile automaton models.

    Deepak Dhar

  • Exactly solved model of self-organized critical phenomena.

    Deepak Dhar;Ramakrishna Ramaswamy

  • The Abelian sandpile and related models

    Deepak Dhar

  • Theoretical studies of self-organized criticality

    Deepak Dhar

  • Equivalence between the Abelian sandpile model and the q→0 limit of the Potts model

    S.N. Majumdar;Deepak Dhar

  • Abelian sandpile model on the bethe lattice

    Deepak Dhar;S. N. Majumdar

  • Height correlations in the Abelian sandpile model

    S N Majumdar;Deepak Dhar

  • Lattices of effectively nonintegral dimensionality

    Deepak Dhar

  • Eulerian Walkers as a Model of Self-Organized Criticality.

    V. B. Priezzhev;Deepak Dhar;Abhishek Dhar;Supriya Krishnamurthy

  • Algebraic aspects of Abelian sandpile models

    D Dhar;Philippe Ruelle;S Sen;D N Verma

  • Exact Solution of a Directed-Site Animals-Enumeration Problem in three Dimensions.

    Deepak Dhar

  • Zero-temperature hysteresis in the random-field Ising model on a Bethe lattice

    Deepak Dhar;Deepak Dhar;Prabodh Shukla;Prabodh Shukla;James P Sethna

  • Self‐avoiding random walks: Some exactly soluble cases

    Deepak Dhar

  • Driven Depinning in Anisotropic Media.

    Lei-Han Tang;Mehran Kardar;Deepak Dhar

  • Directed diffusion in a percolation network

    M Barma;D Dhar

  • Equivalence of the Two-Dimensional Directed-Site Animal Problem to Baxter's Hard-Square Lattice-Gas Model

    Deepak Dhar

  • On the orientational ordering of long rods on a lattice

    A. Ghosh;D. Dhar

  • Enumeration of directed site animals on two-dimensional lattices

    D Dhar;M K Phani;M Barma

  • Hysteresis and self-organized criticality in the O(N) model in the limit N to infinity

    D Dhar;P B Thomas

  • Exact Solution of a Directed-Site Animals-Enumeration Problem in three Dimensions.

    Unknown

  • Zero-temperature Hysteresis in Random-field Ising Model on a Bethe Lattice

    Deepak Dhar;Prabodh Shukla;James P. Sethna

  • Electric field of a six-needle array electrode used in drug and DNA delivery in vivo: analytical versus numerical solution

    S.B. Dev;D. Dhar;W. Krassowska

Frequent Co-Authors

Satya N. Majumdar
Satya N. Majumdar University of Paris-Saclay
James P. Sethna
James P. Sethna Cornell University
Jesper Lykke Jacobsen
Jesper Lykke Jacobsen École Normale Supérieure
Mohit Randeria
Mohit Randeria The Ohio State University
Joel L. Lebowitz
Joel L. Lebowitz Rutgers, The State University of New Jersey
John Cardy
John Cardy University of California, Berkeley
Peter Grassberger
Peter Grassberger Forschungszentrum Jülich
Jayant B. Udgaonkar
Jayant B. Udgaonkar Indian Institute of Science Education and Research Pune

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