11 citations · 11 across the 5 of their papers we have counts for
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Heavy quarkonium dissociation in the presence of magnetic field and anisotropy using dissociation energy criterion
Rishabh Sharma, Siddhartha Solanki, Manohar Lal +1
In this article, we have studied the dissociation temperature of 1S and 2S states of heavy quarkonium in the presence of anisotropy and a strong magnetic field background using the…
Study of Heavy Quarkonia in the presence of magnetic field by Nikiforov Uvarov method
Rishabh Sharma, Siddhartha Solanki, Manohar Lal +1
The N-dimensional radial Schrodinger equation has been solved using the Nikiforov Uvarov (NU) method, in which we used the medium modified form of Cornell potential and quasi-parti…
Dissociation of J/ and using dissociation energy criteria in N-dimensional space
Siddhartha Solanki, Manohar Lal, Vineet Kumar Agotiya
The analytical exact iteration method (AEIM) have been used widely to calculate N-dimensional radial Schrodinger equation with medium modified form of Cornell potential and is gene…
Study of Quarkonium properties using SUSYQM method with baryonic chemical potential
Siddhartha Solanki, Manohar Lal, Rishabh Sharma +1
In this article, we employed the Quasi-particle debye mass at finite baryonic chemical potential which can be used in the medium modified heavy quark potential to solve the N-dimen…
Dissociation and thermodynamical properties of heavy quarkonia in an anisotropic strongly coupled hot QGP: using baryonic chemical potential
Siddhartha Solanki, Manohar Lal, Rishabh Sharma +1
We extended the recent work Phys. Rev. D 97(9), 094033 (2018) to investigate quarkonium dissociation in presence of baryonic chemical potential (mu_b) and anisotropy (ξ) using quas…
Anisotropic behavior of S-wave and P-wave states of heavy quarkonia at finite magnetic field
Manohar Lal, Siddhartha Solanki, Rishabh Sharma +1
We studied the effect of momentum space anisotropy on heavy quarkonium states using an extended magnetized effective fugacity quasiparticle model (EQPM). Both the real and imaginar…