most citedNuclear correlation functions using first-principle calculations of lattice quantum chromodynamics

1 citations · 1 across the 3 of their papers we have counts for

collaborators

7 papers

hep-lat2025

Precisely determining the ground state mass of Spin-3/2 baryon from Lattice QCD

Navdeep Singh Dhindsa, Debsubhra Chakraborty, Archana Radhakrishnan +2

We present the most precise determination to date of the ground-state masses of the triply charmed baryons with both parities, obtained by continuum extrapolation and fully address…

hep-lat2025

Lattice QCD Study of Positive Parity Dibaryons with Maximal Charm and Strangeness

Navdeep Singh Dhindsa, Nilmani Mathur, M. Padmanath

We present the ground-state energy spectra of dibaryons composed of single-flavor quarks, specifically systems with strangeness and charm . Our…

hep-lat2025

Lattice QCD Study of Doubly Heavy Bottom Tetraquarks

Bhabani Sankar Tripathy, Nilmani Mathur, M. Padmanath

Hadrons, composed of quarks and gluons bound by Quantum Chromodynamics (QCD), traditionally classified as baryons (three quarks) and mesons (quark-antiquark pairs). Nothing in the…

hep-lat2025

and tetraquarks from lattice QCD using two-meson and diquark-antidiquark variational basis

Bhabani Sankar Tripathy, Nilmani Mathur, M. Padmanath

We present a lattice QCD investigation of isoscalar tetraquark systems involving bottom quarks with explicit flavor content and . In the doubly…

hep-lat2024

Estimating energy levels from lattice QCD correlation functions using a transfer matrix formalism

Debsubhra Chakraborty, Dhruv Sood, Archana Radhakrishnan +1

We present an efficient method for extracting energy levels from lattice QCD correlation functions by computing the eigenvalues of the transfer matrix associated with the lattice Q…

hep-lat20241 cited

Nuclear correlation functions using first-principle calculations of lattice quantum chromodynamics

Debsubhra Chakraborty, Piyush Srivastava, Arpith Kumar +1

Exploring nuclear physics through the fundamental constituents of the strong force -- quarks and gluons -- is a formidable challenge. While numerical calculations using lattice qua…