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M Kamrul Hassan

Publications and source records attributed to M Kamrul Hassan.

2 recordsLinked to original sources

Analytical model for a cooperative ballistic deposition in one dimension.

We formulate a model for a cooperative ballistic deposition (CBD) process whereby the incoming particles are correlated with those already adsorbed via attractive force. The strength of the correlation is controlled by a tunable parameter a that interpolates the classical car parking problem at a=0, the ballistic deposition at a=1, and the CBD model at a>1. The effects of the correlation in the CBD model are as follows. The jamming coverage q(a) increases with the strength of attraction a due to an ever-increasing tendency of cluster formation. The system almost reaches the closest packing structure as a-->infinity but never forms a percolating cluster, which is typical of one-dimensional systems. In the large a regime, the mean cluster size k increases as a(1/2). Furthermore, the asymptotic approach towards the closest packing is purely algebraic both with a as q(infinity)-q(a) approximately a(-1/2) and with k as q(infinity)-q(k) approximately k(-1), where q(infinity) approximately 1.

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Jamming coverage in competitive random sequential adsorption of a binary mixture.

We propose a generalized car parking problem where cars of two different sizes are sequentially parked on a line with a given probability q. The free parameter q interpolates between the classical car parking problem of only one car size and the competitive random sequential adsorption (CRSA) of a binary mixture. We give an exact solution to the CRSA rate equations and find that the final coverage, the jamming limit of the line, is always larger for a binary mixture than for the unisized case. The analytical results are in good agreement with our direct numerical simulations of the problem.

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