1. Martin, K., et al.: Defensive perimeter detection by polarization change of the fiber optic signal. In: Erbertseder, T., Chrysoulakis, N., Zhang, Y., Baier, F. (eds.) Remote Sensing Technologies and Applications in Urban Environments IV. SPIE-INT SOC Optical Engineering, Strasbourg (2019). roč. 11157. ISSN 0277-786X. ISBN 978-1-5106-3017-8
2. Martin, K., David, G., Karel, S.: Sensor system for measuring temperature changes using alternative detection of polarization changes. In: SPIE Future Sensing Technologies. SPIE, Tokyo (2019). č. 111971A. ISSN 0277-786X. ISBN 9781510631113
3. Martin, K., Filip, D., Jan, M., Čestmír, V.: Sensitivity and dynamic phase response to thermal radiation of a polarization-maintaining fiber. Optica Applicata 48(2), 249–261 (2018). ISSN 0078-5466. IF 1.054
4. Boulmer-Leborgne, C.: A two-dimensional optical fiber sensor array with matrix-style data readout. In: Proceedings of SPIE. Conference: 16th Congress of the International Commission for Optics: Optics as a Key to High Technology, November 2017. https://doi.org/10.1117/12.2308639
5. Feng, Z., Lit, J.W.Y.: Temperature and strain sensitivity measurements of high-birefringent polarization-maintaining fibers. Appl. Opt. 32(13), 2213–2218 (1993). Physics and Computer Science Faculty Publications. https://doi.org/10.1364/AO.32.002213