• Complexity and Entanglement: From quantum gravity to many-body systems 

      Nandy, Pratik
      In recent years, complexity and entanglement have emerged as two fundamental computational measures and played a significant role in shaping our understanding of various phenomena, from the geometric nature of quantum ...
    • Explorations in Quantum Machine Learning 

      Khandelwal, Ankit
      Quantum Machine Learning is a rapidly developing field. In part 1 of this thesis, I benchmark common QML methods with the most popular datasets used in classical ML. I compare results from quantum and classical methods and ...
    • Explorations in the Space of S-Matrices 

      Haldar, Parthiv
      S-matrix is one of the fundamental observables of the quantum theory of relativistic particles. The quantum dynamics of relativistic particles can be abstractly understood in terms of S-matrix bypassing a Lagrangian ...
    • Mesonic screening mass at zero and finite chemical potential 

      Thakkar, Rishabh
      The finite temperature analysis of QCD is challenging since perturbation theory is not applicable in that regime. A non-perturbative method like lattice QCD is thus required to obtain an estimate of the necessary observables. ...
    • On Hypergeometric solutions of Feynman integrals using Mellin-Barnes Integrals with Applications 

      Banik, Sumit
      Experimental measurements of physical observables in particle colliders rely on high-precision theoretical calculations to validate the predictions of any theoretical model and detect signals of new physics. These theoretical ...