activity
20132016
most citedStudy of Rotating High Energy Systems with the Differential HBT Method

11 citations · 31 across the 5 of their papers we have counts for

collaborators

7 papers

q-bio.OT2016★ 7 cited

Quantitative assessment of increasing complexity

L. P. Csernai, S. F. Spinnangr, S. Velle

We study the build up of complexity on the example of 1 kg matter in different forms. We start on the simplest example of ideal gases, and then continue with more complex chemical,…

nucl-th2015★ 8 cited

Differential Hanbury-Brown-Twiss for an exact hydrodynamic model with rotation

S. Velle, L. P. Csernai

We study an exact rotating and expanding solution of the fluid dynamical model of heavy ion reactions, that take into account the rate of slowing down of the rotation due to the lo…

nucl-th2015★ 5 cited

Interferometry for rotating sources

S. Velle, S. Mehrabi Pari, L. P. Csernai

The two particle interferometry method to determine the size of the emitting source after a heavy ion collision is extended. Following the extension of the method to spherical expa…

nucl-th2015

Two particle correlation effects and Differential HBT for rotation in heavy ion collisions

L. P. Csernai, S. Velle, D. J. Wang

Peripheral heavy ion reactions at ultra relativistic energies have large angular momentum that can be studied via two particle correlations using the Differential Hanbury Brown and…

nucl-th2014★ 11 cited

Study of Rotating High Energy Systems with the Differential HBT Method

L. P. Csernai, S. Velle

Peripheral heavy ion reactions at ultra relativistic energies have large angular momentum that can be studied via two particle correlations using the Differential Hanbury Brown and…

nucl-th2013

Differential HBT Method to Analyze Rotation

L. P. Csernai, S. Velle

Two particle correlations are studied in the reaction plane of peripheral relativistic heavy ion reactions where the initial state has substantial angular momentum. The earlier pre…