activity
20122015
most citedSearch for new resonant states in 10C and 11C and their impact on the cosmological lithium problem

48 citations · 172 across the 9 of their papers we have counts for

collaborators

9 papers

astro-ph.SR2015★ 24 cited

Reaction rates of Ge()As and As()Se and the extent of nucleosynthesis in type I X-ray bursts

Y. H. Lam, J. J. He, A. Parikh +7

The extent of nucleosynthesis in models of type I X-ray bursts and the associated impact on the energy released in these explosive events are sensitive to nuclear masses and reacti…

astro-ph.SR2014★ 5 cited

Strength of the E_R = 127 keV, 26Al(p,g)27Si resonance

A. Parikh, J. Jose, A. Karakas +2

We examine the impact of the strength of the E_R = 127 keV, 26Al(p,g)27Si resonance on 26Al production in classical nova explosions and asymptotic giant branch (AGB) stars. Thermon…

nucl-ex2014★ 20 cited

Examination of the role of the O(,)F reaction rate in type I x-ray bursts

J. Hu, J. J. He, A. Parikh +17

The O(,)F reaction is one of the key reactions involved in the breakout from the hot-CNO cycle to the rp-process in type I x-ray bursts (XRBs). The resonant pro…

astro-ph.SR2014★ 24 cited

Investigation of thermonuclear Ne(,)Na rate via resonant elastic scattering of Na+

L. Y. Zhang, J. J. He, A. Parikh +22

The Ne(,)Na reaction is thought to be one of the key breakout reactions from the hot CNO cycles to the rp-process in type I x-ray bursts. In this work, the reso…

nucl-ex2014

Properties of resonant states in 18Ne relevant to key 14O(alpha,p)17F breakout reaction in type I x-ray bursts

J. Hu, J. J. He, A. Parikh +17

The O(,)F reaction is one of the key reactions involved in the breakout from the hot-CNO cycle to the rp-process in type I x-ray bursts. The resonant properties…

astro-ph.SR2014

Classical novae and type I X-ray bursts: challenges for the 21st century

A. Parikh, J. Jose, G. Sala

Classical nova explosions and type I X-ray bursts are the most frequent types of thermonuclear stellar explosions in the Galaxy. Both phenomena arise from thermonuclear ignition in…