@inproceedings {johnson-spp-2009,
	title = {One dimensional migration of DNA in the presence of point particle traps},
	booktitle = {Proceedings of the 27th Samahang Pisika ng Pilipinas Physics Congress},
	year = {2009},
	month = {28{\textendash}30 Oct 2009},
	pages = {SPP-2009-071},
	address = {Development Academy of the Philippines Convention Center, Tagaytay City},
	abstract = {<div>This paper studies the one-dimensional motion of a DNA molecule through a microchannel with a series of point particle electric traps. The three particle molecule model uses three beads connected via harmonic springs in the presence of a Weeks Chandler-Andersen repulsive potential and a Brownian force. Using the stochastic fourth order Runge-Kutta method, the trajectory of the center of mass is observed as the field strengths were varied. System parameters are identified that can impede the flow of a DNA molecule.</div>},
	author = {Sarah Johnson and Cristine Villagonzalo}
}
@inproceedings {johnson-spp-2008,
	title = {Simulation of DNA mobility in one-dimension using the bead-spring model},
	booktitle = {Proceedings of the 26th Samahang Pisika ng Pilipinas Physics Congress},
	year = {2008},
	month = {22{\textendash}24 Oct 2008},
	pages = {SPP-2008-138},
	address = {University of the Phlippines Baguio, Baguio City},
	abstract = {<div>This paper studies the one-dimensional motion of a DNA molecule through a microchannel with a single electric trap. The three particle molecule model uses three beads connected via harmonic springs in the presence of a Weeks-Chandler-Andersen repulsive potential and a Brownian force. Using the stochastic fourth order Runge-Kutta method, the spring constant is sought that allows motion through the microchannel without overlap between the three beads.</div>},
	author = {Sarah Johnson and Cristine Villagonzalo}
}
