Monte Carlo simulation of light transport through lens
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Miljković, Vladimir M.Mitrović, Aleksandra

Stamenković, Dragomir

Popović, Dejana P.
Koruga, Đuro Lj.
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A Monte Carlo model of steady state light transport in contact lenses has been coded in ANSI Standard C. The Monte Carlo simulation offers a flexible, yet rigorous approach to photon transport in tissue which can be applied on the lenses as well. The method describes local rules of photon propagation that are expressed as probability distributions. However, the method is statistical and as such relies on calculating the propagation of large number of photons. As a result, this method requires a large amount of computational time. This method is applied on the lenses and the obtained results are presented. The results confirm the possibility for the theoretical prediction of optical properties of materials.
Keywords:
Monte Carlo method / photons transport / propagation / lenses / opticsSource:
Integritet i vek konstrukcija, 2016, 16, 2, 125-130Publisher:
- Institut za ispitivanje materijala, Beograd
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rFASPERTY - JOUR AU - Miljković, Vladimir M. AU - Mitrović, Aleksandra AU - Stamenković, Dragomir AU - Popović, Dejana P. AU - Koruga, Đuro Lj. PY - 2016 UR - http://rfasper.fasper.bg.ac.rs/handle/123456789/999 AB - A Monte Carlo model of steady state light transport in contact lenses has been coded in ANSI Standard C. The Monte Carlo simulation offers a flexible, yet rigorous approach to photon transport in tissue which can be applied on the lenses as well. The method describes local rules of photon propagation that are expressed as probability distributions. However, the method is statistical and as such relies on calculating the propagation of large number of photons. As a result, this method requires a large amount of computational time. This method is applied on the lenses and the obtained results are presented. The results confirm the possibility for the theoretical prediction of optical properties of materials. PB - Institut za ispitivanje materijala, Beograd T2 - Integritet i vek konstrukcija T1 - Monte Carlo simulation of light transport through lens EP - 130 IS - 2 SP - 125 VL - 16 UR - https://hdl.handle.net/21.15107/rcub_rfasper_999 ER -
@article{ author = "Miljković, Vladimir M. and Mitrović, Aleksandra and Stamenković, Dragomir and Popović, Dejana P. and Koruga, Đuro Lj.", year = "2016", abstract = "A Monte Carlo model of steady state light transport in contact lenses has been coded in ANSI Standard C. The Monte Carlo simulation offers a flexible, yet rigorous approach to photon transport in tissue which can be applied on the lenses as well. The method describes local rules of photon propagation that are expressed as probability distributions. However, the method is statistical and as such relies on calculating the propagation of large number of photons. As a result, this method requires a large amount of computational time. This method is applied on the lenses and the obtained results are presented. The results confirm the possibility for the theoretical prediction of optical properties of materials.", publisher = "Institut za ispitivanje materijala, Beograd", journal = "Integritet i vek konstrukcija", title = "Monte Carlo simulation of light transport through lens", pages = "130-125", number = "2", volume = "16", url = "https://hdl.handle.net/21.15107/rcub_rfasper_999" }
Miljković, V. M., Mitrović, A., Stamenković, D., Popović, D. P.,& Koruga, Đ. Lj.. (2016). Monte Carlo simulation of light transport through lens. in Integritet i vek konstrukcija Institut za ispitivanje materijala, Beograd., 16(2), 125-130. https://hdl.handle.net/21.15107/rcub_rfasper_999
Miljković VM, Mitrović A, Stamenković D, Popović DP, Koruga ĐL. Monte Carlo simulation of light transport through lens. in Integritet i vek konstrukcija. 2016;16(2):125-130. https://hdl.handle.net/21.15107/rcub_rfasper_999 .
Miljković, Vladimir M., Mitrović, Aleksandra, Stamenković, Dragomir, Popović, Dejana P., Koruga, Đuro Lj., "Monte Carlo simulation of light transport through lens" in Integritet i vek konstrukcija, 16, no. 2 (2016):125-130, https://hdl.handle.net/21.15107/rcub_rfasper_999 .