Sameer Ahmad Mir
Canadian Quantum Research Center, Asian School of Business, Jamia Millia Islamia
About
I am an enthusiastic physicist and researcher in theoretical high-energy physics, with research interests spanning quark-gluon plasma, hadron phenomenology, hadron resonance gas models, mean-field approaches, and holographic descriptions of strongly coupled matter. My work is broadly connected to contemporary developments in holographic physics, particularly gauge/gravity duality and holographic QCD, where gravitational dual models provide powerful tools for understanding non-perturbative features of quantum chromodynamics, dense nuclear matter, hadronic spectra, and strongly interacting phases of matter. Currently, I am associated with the Canadian Quantum Research Center and the Asian School of Business, Noida, and my research contributes to modern studies in high-energy physics, nuclear matter, and quantum-theoretical frameworks inspired by both effective field-theoretic and holographic approaches.
Employment
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Canadian Quantum Research Center Junior Scientist2025 - Present
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Asian School of Business Assistant Professor Physics2024 - Present
Education
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Jamia Millia Islamia Research Scholar2021 - 2026
Projects & Funding
Projects & funding information is unavailable.
Publications (30)
- Minimal-length deformations of chiral quark matter in a 2+1-flavor NJL model Save
- Finite-resolution limits on quantum uniqueness Save
- Quark–Hadron Phase Transition Using Van der Waals HRG and QCD Loop Corrections Save
- Early stage kinetic freezeout using $phi$ meson $p_T$-spectra in the framework of unified statistical thermal freezeout model Save
- Undecidability in spacetime geometry via the AdS/CFT correspondence Save
- Dynamic Mass of Hadrons in Three Flavor Nambu-Jona Lasinio Model Save
- A Study of Chemical Freeze-Out in Ultra-Relativistic Nucleus-Nucleus Collisions Using the van der Waals Type Model Approach Save
- Geometric Baryogenesis With Chiral‐Time Equivalence Save
- Unified Functional‐Holographic Theory of the QCD Critical End Point Save
- Transverse momentum distributions and freeze-out parameters of $$\phi $$ meson in nuclear collisions Save