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NSR database version of May 24, 2024.

Search: Author = S.Sanyal

Found 18 matches.

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2022SA32      Phys.Rev. C 106, 014901 (2022)

A.Saha, D.Dan, S.Sanyal

Machine-learning model-driven prediction of the initial geometry in heavy-ion collision experiments

doi: 10.1103/PhysRevC.106.014901
Citations: PlumX Metrics

2010MI28      Eur.Phys.J. A 45, 169 (2010)

A.Mishra, A.Kumar, S.Sanyal, V.Dexheimer, S.Schramm

Kaon properties in (proto-)neutron star matter

doi: 10.1140/epja/i2010-10986-x
Citations: PlumX Metrics

2009MI22      Eur.Phys.J. A 41, 205 (2009)

A.Mishra, A.Kumar, S.Sanyal, S.Schramm

Kaon and antikaon optical potentials in isospin asymmetric hyperonic matter

doi: 10.1140/epja/i2009-10777-6
Citations: PlumX Metrics

2003LA12      Pramana 60, 997 (2003)

B.Layek, S.Sanyal, A.M.Srivastava

Baryon inhomogeneities due to cosmic string wakes at the quark-hadron transition

doi: 10.1007/BF02707019
Citations: PlumX Metrics

2003LA25      Pramana 61, 1039 (2003)

B.Layek, S.Sanyal, A.M.Srivastava

Implications of cosmic string-induced density fluctuations at the quark-hadron transition

doi: 10.1007/BF02704476
Citations: PlumX Metrics

2003SA61      Pramana 61, 1033 (2003)


Effect of pre-existing baryon inhomogeneities on the dynamics of quark-hadron transition

doi: 10.1007/BF02704475
Citations: PlumX Metrics

2002RA48      Nucl.Phys. A712, 329 (2002)

R.Ray, S.Sanyal, A.M.Srivastava

Formation and collapse of false vacuum bubbles in relativistic heavy-ion collisions

NUCLEAR REACTIONS Pb(Pb, X), 197Au(197Au, X), E=high; calculated false vacuum bubble production features.

doi: 10.1016/S0375-9474(02)01168-5
Citations: PlumX Metrics

1996NA29      Z.Phys. C73, 133 (1996)

R.Nag, S.Sanyal

Integrated Spin Structure Function of the Nucleon using Extended Fock Space Approach

NUCLEAR STRUCTURE 1n, 1H; calculated integrated spin structure functions; deduced antisymmetrization role, sea quark contributions.

doi: 10.1007/s002880050302
Citations: PlumX Metrics

1996SA04      J.Phys.(London) G22, L7 (1996)

S.Sanyal, R.Nag

μ(p)/μ(n) Using an Extended Fock Space Wavefunction

NUCLEAR STRUCTURE 1n, 1H; calculated μ ratio. Extended Fock space wavefunction.

doi: 10.1088/0954-3899/22/2/001
Citations: PlumX Metrics

1994NA23      J.Phys.(London) G20, L125 (1994)

R.Nag, S.Sanyal

An Explanation for Negative Strange Sea Polarization using an Extended Fock Space Wavefunction

doi: 10.1088/0954-3899/20/11/001
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1991NA10      Phys.Rev. C44, 1709 (1991)

R.Nag, S.N.Mukherjee, S.Sanyal

Energy Levels of a Muonic Hydrogen Atom with the Use of a Quark Model

NUCLEAR STRUCTURE 1H; calculated charge distribution, form factor; deduced muonic atom level energies. Nonrelativistic quark model.

doi: 10.1103/PhysRevC.44.1709
Citations: PlumX Metrics

1990NA07      Prog.Theor.Phys.(Kyoto) 83, 51 (1990)

R.Nag, S.Sanyal, S.N.Mukherjee

Hyperspherical Harmonics Technique for the Electromagnetic Structure of Nucleon

NUCLEAR STRUCTURE 1n, 1H; calculated charge form factor. Single quark potential model.

doi: 10.1143/PTP.83.51
Citations: PlumX Metrics

1989NA15      Pramana 32, 761 (1989)

R.Nag, S.N.Mukherjee, S.Sanyal

Criterion for a Unique Non-Relativistic Quark Model

NUCLEAR STRUCTURE 1n, 1H; calculated rms charge radii. Unique nonrelativistic quark potential model.

doi: 10.1007/BF02845997
Citations: PlumX Metrics

1987SA23      Phys.Rev. C36, 67 (1987)

S.Sanyal, S.N.Mukherjee

Inelastic Electron Scattering Charge Form-Factor of 4He

NUCLEAR STRUCTURE 4He; calculated binding energy, rms radius.

NUCLEAR REACTIONS 4He(e, e'), E not given; calculated charge form factor.

doi: 10.1103/PhysRevC.36.67
Citations: PlumX Metrics

1985SA01      Phys.Rev. C31, 33 (1985)

S.Sanyal, S.N.Mukherjee

Hyperspherical Formalism for the Photoeffect of Alpha Particle

NUCLEAR REACTIONS 4He(γ, X), E=20-80 MeV; calculated photoeffect σ(E), moments. Hyperspherical harmonics, coupled equations, adiabatic approximation.

doi: 10.1103/PhysRevC.31.33
Citations: PlumX Metrics

1976SA20      Phys.Rev. C14, 1285 (1976)

S.Sanyal, A.Kumar, S.K.Soni, S.L.Gupta, S.C.Pancholi

Half-Life Measurement of the 57.6-keV Level in 127I

RADIOACTIVITY 127mTe; measured βγ(t). 127I level deduced T1/2.

doi: 10.1103/PhysRevC.14.1285
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1975SA06      Phys.Rev. C12, 318 (1975)

S.Sanyal, R.K.Garg, S.D.Chauhan, S.L.Gupta, S.C.Pancholi

Half-Life Measurement of the 212Po Ground State

RADIOACTIVITY 212Po; measured T1/2.

doi: 10.1103/PhysRevC.12.318
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1972GA39      Z.Phys. 257, 124 (1972)

R.K.Garg, S.D.Chauhan, S.Sanyal, S.C.Pancholi, S.L.Gupta, N.K.Saha

Half-Life Measurements in 59Co, 141Pr and 227Ac

RADIOACTIVITY 59Fe, 141Ce; measured βγ-delay, 231Pa measured αγ-delay. 59Co, 141Pr, 227Ac levels deduced T1/2.

doi: 10.1007/BF01403543
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