Numerical modelling of optical trapping. Nieminen, T., Rubinsztein-Dunlop, H., Heckenberg, N., & Bishop, a I. Computer Physics Communications, 142(1-3):468--471, 2001.
doi  abstract   bibtex   
Optical trapping is a widely used technique, with many important applications in biology and metrology. Complete modelling of trapping requires calculation of optical forces, primarily a scattering problem, and non-optical forces. The T-matrix method is used to calculate forces acting on spheroidal and cylindrical particles.
@article{nieminen_numerical_2001,
	title = {Numerical modelling of optical trapping},
	volume = {142},
	issn = {00104655},
	doi = {10.1016/S0010-4655(01)00391-5},
	abstract = {Optical trapping is a widely used technique, with many important applications in biology and metrology. Complete modelling of trapping requires calculation of optical forces, primarily a scattering problem, and non-optical forces. The T-matrix method is used to calculate forces acting on spheroidal and cylindrical particles.},
	number = {1-3},
	journal = {Computer Physics Communications},
	author = {Nieminen, T.a. and Rubinsztein-Dunlop, H. and Heckenberg, N.R. and Bishop, a I.},
	year = {2001},
	keywords = {optical tweezers, radiation pressure, trapping},
	pages = {468--471},
	file = {Nieminen et al_2001_Numerical modelling of optical trapping.pdf:/Users/baptiste/Library/Application Support/Zotero/Profiles/d9rq1atq.default/zotero/storage/EWEZM79A/Nieminen et al_2001_Numerical modelling of optical trapping.pdf:application/pdf}
}

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