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Hiroshi Ohno

Researcher at University of Tsukuba

Publications -  83
Citations -  2473

Hiroshi Ohno is an academic researcher from University of Tsukuba. The author has contributed to research in topics: Quantum chromodynamics & Lattice QCD. The author has an hindex of 19, co-authored 81 publications receiving 1910 citations. Previous affiliations of Hiroshi Ohno include Brookhaven National Laboratory & United States Department of Energy.

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Chiral crossover in QCD at zero and non-zero chemical potentials

TL;DR: In this article, the results for pseudo-critical temperatures of QCD chiral crossovers at zero and non-zero values of baryon (B), strangeness (S), electric charge (Q), and isospin (I) chemical potentials were obtained using lattice QCD calculations carried out with two degenerate up and down dynamical quarks and a dynamical strange quark, with quark masses corresponding to physical values of pion and kaon masses in the continuum limit.
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Additional strange hadrons from QCD thermodynamics and strangeness freezeout in heavy ion collisions.

TL;DR: It is shown that the thermodynamic presence of these additional states gets imprinted in the yields of the ground-state strange hadrons leading to a systematic 5-8 MeV decrease of the chemical freeze-out temperatures of ground- state strange baryons.
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Chiral Phase Transition Temperature in (2+1)-Flavor QCD

TL;DR: A lattice-QCD-based determination of the chiral phase transition temperature in QCD with two degenerate, massless quarks and a physical strange quark mass is presented using lattice QCD calculations with the highly improved staggered quarks action.
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Nonperturbative estimate of the heavy quark momentum diffusion coefficient

TL;DR: In this article, the authors estimate the momentum diffusion coefficient of a heavy quark within a pure SU(3) plasma at a temperature of about 1.5Tc and obtain κ=(1.8-3.4)T3.