Vidwan-ID : 68403



  • Dr Ayan Mukhopadhyay

  • Associate Professor
  • Indian Institute of Technology, Madras
Publications 2006 - 2024

Publications

  • 39
    Journal Articles
  • 1
    Book Chapter
  • 3
    Conference
    Proceedings
  • 1
    Editorial
  • 1
    Preprint
  • 1
    Review
  • 3
    Projects
  • 13
  • 3
  • 10
  • 1
  • 13

Citations / H-Index

488 Citations
12 h-index
393 Citations

Google Scholar

Co-author Network


Expertise

Multidisciplinary Physics

Theoretical Physics, Quantum Field Theory and String Theory, Quantum Many-Body Systems

Personal Information

Dr Ayan Mukhopadhyay

Male
Department of Physics Indian Institute Of Technology, Chennai, Tamil Nadu, India
Chennai, Tamil Nadu, India - 600036


Experience


Qualification

  • Ph.D

    Harish-Chandra Research Institute, Allahabad


Honours and Awards

2018

Ramanujan Fellowship

SERB, DST-India

2018

Ramanujan Fellowship

SERB, DST-India

Read Less

Doctoral Theses Guided

2024

Aspects of interplay between Quantum Information and Dynamics in black holes and many-body systems

Tanay Kibe, IIT Madras

2023

Studies of ultra-relativistic macroscopic phenomena including real time correlations

Toshali Mitra, DAE-Institute of Mathematical Sciences

2022

Aspects of Semi-Holography for Quantum Many-Body Systems

Sukrut Mondkar, Indian Institute of Technology Madras

Read More
2024

Aspects of interplay between Quantum Information and Dynamics in black holes and many-body systems

Tanay Kibe, IIT Madras

2023

Studies of ultra-relativistic macroscopic phenomena including real time correlations

Toshali Mitra, DAE-Institute of Mathematical Sciences

2022

Aspects of Semi-Holography for Quantum Many-Body Systems

Sukrut Mondkar, Indian Institute of Technology Madras

2019

Semiholographic Thermalization in Strongly Coupled Nonabelian Gauge Theories

Alexander Soloviev, TU Wien, Vienna, Austria

Read Less

Research Projects

Novel Non-Perturbative Approaches to Strongly Coupled QCD Matter

Funding Agency : IFCPAR/CEFIPRA

A Novel Paradigm for Strongly Correlated Systems - Ramanujan Fellowship

Funding Agency : DST-SERB

A Novel Non-Perturbative Approach for Understanding Heavy-ion Collisions

Funding Agency : DST-SERB

Novel Non-Perturbative Approaches to Strongly Coupled QCD Matter

Funding Agency : IFCPAR/CEFIPRA

A Novel Paradigm for Strongly Correlated Systems - Ramanujan Fellowship

Funding Agency : DST-SERB

A Novel Non-Perturbative Approach for Understanding Heavy-ion Collisions

Funding Agency : DST-SERB

Read Less