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Two Methods For Modelling The Propagation Of Terahertz Radiation In A Layered Structure

Walker, G.C.; Berry, E.; Smye, S.W.; Zinov'ev, N.N.; Fitzgerald, A.J.; Miles, R.E.; Chamberlain, M.; Smith, M.A.

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Authors

G.C. Walker

E. Berry

S.W. Smye

N.N. Zinov'ev

A.J. Fitzgerald

R.E. Miles

M. Chamberlain

M.A. Smith



Abstract

Modelling the interaction of terahertz(THz) radiation with biological tissueposes many interesting problems. THzradiation is neither obviously described byan electric field distribution or anensemble of photons and biological tissueis an inhomogeneous medium with anelectronic permittivity that is bothspatially and frequency dependent making ita complex system to model.A three-layer system of parallel-sidedslabs has been used as the system throughwhich the passage of THz radiation has beensimulated. Two modelling approaches havebeen developed a thin film matrix model anda Monte Carlo model. The source data foreach of these methods, taken at the sametime as the data recorded to experimentallyverify them, was a THz spectrum that hadpassed though air only.Experimental verification of these twomodels was carried out using athree-layered in vitro phantom. Simulatedtransmission spectrum data was compared toexperimental transmission spectrum datafirst to determine and then to compare theaccuracy of the two methods. Goodagreement was found, with typical resultshaving a correlation coefficient of 0.90for the thin film matrix model and 0.78 forthe Monte Carlo model over the full THzspectrum. Further work is underway toimprove the models above 1 THz.

Citation

Walker, G., Berry, E., Smye, S., Zinov'ev, N., Fitzgerald, A., Miles, R., …Smith, M. (2003). Two Methods For Modelling The Propagation Of Terahertz Radiation In A Layered Structure. Journal of Biological Physics, 29(2-3), 141-148. https://doi.org/10.1023/a%3A1024484523964

Journal Article Type Article
Publication Date Jun 1, 2003
Deposit Date Jun 3, 2016
Publicly Available Date Jun 6, 2016
Journal Journal of Biological Physics
Print ISSN 0092-0606
Electronic ISSN 1573-0689
Publisher Springer
Peer Reviewed Peer Reviewed
Volume 29
Issue 2-3
Pages 141-148
DOI https://doi.org/10.1023/a%3A1024484523964

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Copyright Statement
Reprinted from Journal of biological physics, 29(2-3), 2003, 141-148, with permission of Kluwer Law International.





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