activity
20122020
most citedSpin polarization evolution in a boost invariant hydrodynamical background

91 citations · 98 across the 6 of their papers we have counts for

collaborators

9 papers

nucl-th2020

Hydrodynamics formalism with Spin dynamics

Rajeev Singh

We review the key steps of the relativistic fluid dynamics formalism with spin degrees of freedom initiated recently. We obtain equations of motion of the expansion of the system f…

nucl-th20202 cited

Relativistic hydrodynamics for spin-polarized media

Radoslaw Ryblewski, Rajeev Singh

We summarize the key ingredients of the recently proposed formalism of relativistic perfect-fluid hydrodynamics with spin. Based on the underlying kinetic theory definitions for th…

hep-ph2020

Boost-invariant description of polarization within hydrodynamics with spin

Rajeev Singh

We briefly review a recently proposed formalism of perfect-fluid hydrodynamics with spin, which is a generalization of the standard hydrodynamic framework and provides a natural to…

nlin.PS20193 cited

Lateral inhibition provides a unifying framework for spatiotemporal pattern formation in media comprising relaxation oscillators

R. Janaki, Shakti N. Menon, Rajeev Singh +1

The collective dynamics seen in a wide variety of chemical, biological and ecological systems involve interactions between relaxation oscillators that typically involve fast activa…

hep-ph201991 cited

Spin polarization evolution in a boost invariant hydrodynamical background

Wojciech Florkowski, Avdhesh Kumar, Radoslaw Ryblewski +1

Relativistic hydrodynamic equations for particles with spin one-half are used to determine the space-time evolution of the spin polarization in a boost-invariant and transversely h…

quant-ph2018

Analytical solutions of inhomogeneous transverse field Ising models

Abhijit P. Chaudhari, Rajeev Singh, Sunil K. Mishra

The inhomogeneous transverse field Ising models mainly impurity based and the joint chain are analysed analytically using Jordan-Wigner transformations. The effects of inhomogeneit…