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LIDAR DECONVOLUTION:
1. Mladenoff, J.E., Tzonev, L., Kirilov, K., Avramova, I., Avdeev, G., Valcheva, E., Russev, S., Arnaudov, B., Terziiska, P., Kolev, S., Milenov, T.
"Deconvolution techniques for improving the resolution of long-pulse LIDARs",
J. Opt. Soc. Am. A 10, 2296-2306 (1993).
4. L. L. Gurdev, T. N. Dreischuh, and D. V. Stoyanov,
"Pulse-backscattering tomography based on LIDAR principle",
Optics Communications 151, 339-352 (1998).
5. D. V. Stoyanov, L.L. Gurdev, G.V. Kolarov, and O.I. Vankov
"Lidar profiling by long rectangular-like chopped laser pulses",
Optical Engineering 39, 1556 (2000).
10. Tanja N. Dreischuh, Ljuan L. Gurdev, Dimitar V. Stoyanov,
“Statistical modeling of deconvolution procedures for improving the resolution of measuring electron temperature profiles in tokamak plasmas by Thomson scattering LIDAR”,
Proceedings of SPIE, Vol. 7747 (SPIE, Bellingham, WA, 2011) 77470T.
11. D.Stoyanov, M.Beurskens, T.Dreischuh, L.Gurdev, O.Ford, J.Flanagan, M.Kempenaars, I.Balboa, M.Walsh and JET EFDA Contributors,
"Resolving the plasma electron temperature pedestal in JET from Thomson scattering Core LIDAR data",
in: Proc. 37th EPS Conference on Plasma Physics. Contributed papers. (Dublin, Ireland, 2010), ECA Vol.34A, P-5.133 (European Physical Society, Geneva, 2010) (4 pages), ISBN:2-914771-62-2.
12. T. Dreischuh, L. Gurdev, D. Stoyanov, M. Beurskens, M. Walsh, A. Capel and JET EFDA contributors,
“Statistical modeling of the error in the determination of the electron temperature in JET by a novel Thomson scattering LIDAR approach",
in: Proc. 36th EPS Conference on Plasma Physics. Contributed papers. (Sofia, Bulgaria, 2009), ECA Vol.33E, P-2.149 (European Physical Society, Geneva, 2009) (4 pages), ISBN:2-914771-61-4.
13. D.Stoyanov, T.Dreischuh, L.Gurdev, M.Beurskens, O.Ford, J.Flanagan, M.Kempenaars, I.Balboa, M.Walsh and JET EFDA Contributors,
“Deconvolution of JET core LIDAR data and pedestal detection in retrieved electron temperature and density profiles",
in: Proc. 36th EPS Conference on Plasma Physics. Contributed papers. (Sofia, Bulgaria, 2009), ECA Vol.33E, P-2.155 (European Physical Society, Geneva, 2009) (4 pages), ISBN:2-914771-61-4.
14. Tanja N. Dreischuh, Ljuan L. Gurdev, Dimitar V. Stoyanov,
"Monte-Carlo Analysis of the Accuracy of a Novel Thomson Scattering LIDAR Approach to Measuring the Electron Temperature in Fusion Plasmas",
American Institute of Physics Conference Proceedings 1203, Angelos Angelopoulos, Takis Fildisis, Eds. (Melville, New York, 2009), pp. 1468-1473, ISBN 978-0-7354-0740-4.
19. Tanja N. Dreischuh, Dimitar V. Stoyanov, Orlin Vankov, and Georgi V. Kolarov,
"High precision laser range measurements using convolution and deconvolution of reflected pulses",
Proceedings of SPIE 5226, 305-309 (2003).
20. T. N. Dreischuh, L. L. Gurdev, and D. V. Stoyanov,
"Optimum coherent-LIDAR-data-based retrieving of high-resolution Doppler velocity profiles",
Balk. Phys. Lett. Special Issue, 59-62 (2002).
24. T.N. Dreischuh, L.L. Gurdev, and D.V. Stoyanov,
"LIDAR profile deconvolution algorithms for some rectangular-like laser pulse shapes",
Advances in Atmospheric Remote Sensing with LIDAR,
A.Ansmann, R. Neuber, P.Raioux, U. Wandinger, eds., 135-138 (Springer Verlag, Berlin, 1996);
ISBN 3540618872.
25. L.L. Gurdev, T.N. Dreischuh, and D.V. Stoyanov,
"On the deconvolution of Doppler-LIDAR power profiles with zero spectral components of the laser pulses",
Coherent Laser Radar: Technology and Applications vol. 19, 1995 OSA Technical Digest Series (Optical Society of America, Washington DC, 1995), pp.92-95.
26. D.V. Stoyanov, L.L. Gurdev, and T.N. Dreischuh,
"Filtering of pulse-spike-induced uncertainty in deconvolved Doppler-LIDAR power profiles",
Coherent Laser Radar: Technology and Applications, vol. 19, 1995 OSA Technical Digest Series (Optical Society of America, Washington DC, 1995), pp.226-229.
27. D.V. Stoyanov, T.N. Dreischuh,
"Computer modeling of a LIDAR receiving system with a nanosecond resolution",
Proceedings of the 17th International Laser Radar Conference, H. Inaba, ed.
(Tohuku Institute of Technology Press, Tohuku, Japan, 1994), pp.63-65.
28. T.N. Dreischuh, D.V. Stoyanov, and L.L. Gurdev,
"On the influence of the pulse-shape uncertainty on the accuracy of Fourier-deconvolved LIDAR profiles",
Proceedings of the 17th International Laser Radar Conference, H. Inaba, ed.
(Tohuku Institute of Technology Press, Tohuku, Japan, 1994), pp.561-563.
29. T.N. Dreischuh, D.V. Stoyanov, and L.L. Gurdev,
"Statistical characteristics of Fourier-deconvolved NOAA 10.6 ground-based LIDAR data",
Proceedings of the Seventh Conference on Coherent Laser Radar Applications and Technology,
P.H.Flamant, ed., (Ecole Polytechnique, Paris, 1993), pp.290-293.
30. D. Stoyanov, L. Gurdev, T. Dreischuh, Ch. Werner, J. Streicher, S. Rahm, G. Wildgruber,
"One approach to improve the resolution of Doppler LIDARs",
Proceedings of the Seventh Conference on Coherent Laser Radar Applications and Technology,
P.H.Flamant, ed., (Ecole Polytechnique, Paris, 1993), pp.229-232.
31. L.L. Gurdev, T.N. Dreischuh, and D.V. Stoyanov,
"High-Resolution processing of long-pulse-LIDAR data",
NASA Conference Publication 3158, 16 ILRC, Part II, pp.637-640 (1992).
32. L.L. Gurdev, D.V. Stoyanov, and T.N. Dreischuh,
"Inverse algorithm for increasing the resolution of long-pulse LIDARs",
in Coherent Laser Radar: Technology and Applications, Vol.12 of the 1991 OSA Technical Digest Series (Optical Society of America, Washington, D.C., 1991), pp.284-287.


OPTICAL TOMOGRAPHY:
1. L. L. Gurdev, T. N. Dreischuh, and D. V. Stoyanov,
"Pulse-backscattering tomography based on LIDAR principle",
Optics Communications 151, 339-352 (1998).
2. Ljuan L. Gurdev, Tanja N. Dreischuh, Dimitar V. Stoyanov,
"Potentialities of LIDAR-type single-sided optical tomography of tissues",
Proceedings of SPIE 6604, art.# 66042I (2007).
3. I. Bliznakova, L. Gurdev, T. Dreischuh, O. Vankov, D. Stoyanov, L. Avramov,
“A dual interpretation of experimental data concerning the propagation of laser light through tissue-like turbid media”,
Proceedings of SPIE, Vol. 7747 (SPIE, Bellingham, WA, 2011) 774710.
4. I. Bliznakova, O. Vankov, T. Dreischuh, L. Avramov and D. Stoyanov,
“Measurement of small variations in optical properties of turbid ingredients with respect to surrounding turbid medium",
Acta Physica Polonica A 116, (4), 681-683 (October 2009), PL ISSN 0587-4246 (printed), PL ISSN 1898-794X (online)
5. Ljuan L. Gurdev, Irina A. Bliznakova, Tanja N. Dreischuh, Orlin I. Vankov, Dimitar V. Stoyanov, Lachezar A. Avramov,
“Quantitative Analysis of Experimental Data on the Effects Accompanying the Propagation of Laser Radiation through Biological-Tissue-Like Turbid Media",
American Institute of Physics Conference Proceedings 1203, Angelos Angelopoulos, Takis Fildisis,
Eds. (Melville, New York, 2009), pp.716-721, ISBN 978-0-7354-0740-4.


GAMMA-RAY SINGLE-SIDED TOMOGRAPHY:
1. Ljuan L. Gurdev, Dimitar V. Stoyanov, Tanja N. Dreischuh, Christo N. Protochristov, Orlin I. Vankov,
"Gamma-ray backscattering tomography approach based on the LIDAR principle",
IEEE Transactions on Nuclear Science 54, No.1, part 2, 262-275 (2007).
2. Ljuan L. Gurdev, Tanja N. Dreischuh, Dimitar V. Stoyanov, Christo N. Protochristov,
"Gamma-Ray LIDAR (GRAYDAR) in-depth sensing of optically opaque media",
in “Nuclear Methods for Non-Nuclear Applications”, ed. Ch. Stoyanov (Heron Press, Sofia, 2007), 333-348, ISBN: 978-954-580-209-6.
3. Tanja N. Dreischuh, Ljuan L. Gurdev, Dimitar V. Stoyanov, Christo N. Protochristov, Orlin I. Vankov,
"Application of a LIDAR-type gamma-ray tomography approach for detection and identification of buried plastic landmines",
Proceedings of SPIE 6604, art.# 660420 (2007).
4. L. L. Gurdev, T. N. Dreischuh, D. V. Stoyanov and C. N. Protochristov,
“On the possibility of determining the distribution of a substance penetrating into a dense medium using gamma-ray detection and ranging approach",
Acta Physica Polonica A 118, (4), 540-549 (2010), PL ISSN 0587-4246 (printed), PL ISSN 1898-794X (online)
5. Tanja N. Dreischuh, Dimitar V. Stoyanov, Ljuan L. Gurdev, Christo N. Protochristov,
"Gamma-ray LIDAR for sensing dense optically-opaque media",
Bulgarian Academy of Sciences NEWS: Monthly Informational Bulletin About Science and Technologies 4 (44) (2007).
6. Tanja N. Dreischuh, Ljuan L. Gurdev, Dimitar V. Stoyanov, Christo N. Protochristov, Orlin I. Vankov,
"On the efficiency of a LIDAR-type single-sided gamma-ray tomography approach",
American Institute of Physics Conference Proceedings 889, S. Cetin, I. Hikmet, Eds. (Melville, New York, 2007), 778.








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