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OptiLayer:  Your Partner in Design and Post-Production Characterization of Optical Coatings

 

Our publications on design:

J. D. T. Kruschwitz, V. Pervak, J. Keck, I. Bolshakov, Z. Gerig, F. Lemarchand, K. Sato, W. Southwell, M. Sugiura, Muneo; M. Trubetskov, W. Yuan,  Optical interference coating design contest 2016: a dispersive mirror and coating uniformity challenge, Applied Optics 56, 2017, C151-C162, https://doi.org/10.1364/AO.56.00C151

T. Amotchkina, M. Trubetskov, F. Habel, Y. Pervak, J. Zhang, K.-F. Mak, O. Pronin, F. Krausz, V. Pervak,  Synthesis, fabrication and characterization of a highly-dispersive mirrors for the 2 µm spectral range, Optics Express 25, pp. 10234-10240 (2017), https://doi.org/10.1364/OE.25.010234

T. Amotchkina, H. Fattahi, Y. Pervak, M. Trubetskov, V. Pervak, Broadband beamsplitter for high intensity laser applications in the infra-red spectral range, Optics Express 24, 16752-16759 (2016), https://doi.org/10.1364/OE.24.016752

V. Zhupanov, I. Kozlov, V. Fedoseev, P. Konotopov, M. Trubetskov, A. Tikhonravov,  Production of Brewster angle thin film polarizers using a ZrO2/SiO2 pair of materials, Applied Optics 56, pp. C30-C34 (2017), https://doi.org/10.1364/AO.56.000C30

N. Lilienfein, C. Hofer, S. Holzberger, C. Matzer, P. Zimmermann, M. Trubetskov, V. Pervak, and I. Pupeza, Enhancement cavities for few-cycle pulses, Optics Letters 42, pp. 271-274 (2017), https://doi.org/10.1364/OL.42.000271

F. Habel, V. Shirvanyan, M. Trubetskov, C. Burger, A. Sommer, M. F. Kling, M. Schultze, and V. Pervak, Octave spanning wedge dispersive mirrors with low dispersion oscillations, Optics Express 24, pp. 9218-9223 (2016), https://doi.org/10.1364/OE.24.009218

S. Holzberger, N. Lilienfein, H. Carstens, T. Saule, M. Högner, F. Lücking, M. Trubetskov, V. Pervak, T. Eidam, J. Limpert, A. Tünnermann, E. Fill, F. Krausz, and I. Pupeza, Femtosecond Enhancement Cavities in the Nonlinear Regime, Phys. Rev. Lett. 115, (2015).

O. Pronin, M. Seidel, F. Lücking, J. Brons, E. Fedulova, M. Trubetskov, V. Pervak, A. Apolonski, T. Udem, and F. Krausz, High-power multi-megahertz source of waveform-stabilized few-cycle light, Nat. Commun. 6, 6988 (2015).

E. Fedulova, K. Fritsch, J. Brons, O. Pronin, T. Amotchkina, M. Trubetskov, F. Krausz, and V. Pervak, Highly-dispersive mirrors reach new levels of dispersion, Opt. Express 23, 13788 (2015).

Razskazovskaya, T. T. Luu, M. Trubetskov, E. Goulielmakis, and V. Pervak, Nonlinear absorbance in dielectric multilayers, Optica 2, 803 (2015).

Sh. Furman and A.V.Tikhonravov, "Basics of optics of multilayer systems", Editions Frontiers, Gif-sur Yvette, 1992, 242 p.

T. Amotchkina, M. Trubetskov, A.Tikhonravov, J. Kruschwitz, Optical Design: Advanced thin-film software techniques improve design-to-fabrication workflow, Laser Focus World, January 2015

M. Trubetskov, T. Amotchkina, A. Tikhonravov, L. Veisz, V. Pervak, Design, production, and reverse engineering of a double sided innovative thin film laser element, SPIE Proc. Vol. 9627 (2015)

V. Zhupanov, V. Fedoseev, M. Trubetskov, T. Amotchkina, A. Tikhonravov, Design and production of three line antireflection coatings for visible and far infrared spectral regions, Proc. SPIE 9627  (2015)

T. Amotchkina, M.Trubetskov, Y. Pervak, L. Veisz, V. Pervak, Stress compensation with antireflection coatings for ultrafast laser applications: from theory to practice, Vol. 22, pp. 30387-30393 (2014)

T. Amotchkina, U. Brauneck, A. Tikhonravov, M. Trubetskov, Sensitivity-directed refinement for designing broadband blocking filters, Opt. Express, Vol. 23, pp. 5565-5570 (2015)

E. Fedulova, K. Fritsch, J. Brons, O. Pronin, T. Amotchkina, M. Trubetskov, F. Krausz, V. Pervak, Highly-dispersive mirrors reach new levels of dispersion, Vol. 23, pp. 13788-13793 (2015)

H. Jiao,  X. Cheng, G. Bao, J. Han, J. Zhang, Zh. Wang, M. Trubetskov, A. Tikhonravov, Study of HfO2/SiO2 dichroic laser mirrors with refractive index inhomogeneity,  Appl. Opt., Vol. 53, pp. A56-A61 (2014)

V. Pervak, V. Fedorov, Yu. A. Pervak, and M. Trubetskov, "Empirical study of the group delay dispersion achievable with multilayer mirrors", Optics Express, Vol. 21, Issue 15, pp. 18311-18316 (2013).

J. Zhang, A.V. Tikhonravov, M.K. Trubetskov, Y. Liu, X. Cheng, Zh. Wang,  "Design and fabrication of ultra-steep notch filters", Optics Express, Vol. 21 Issue 18, pp.21523-21529 (2013)

A. Tikhonravov, M. Trubetskov,  "Design of optical coatings taking into account thin film inhomogeneity," in Optical Interference Coatings, OSA Technical Digest (Optical Society of America, 2013), paper TD.6.

H. Jiao, X. Cheng, G. Bao, J. Han, J. Zheng, Zh. Wang, M. K. Trubetskov, A. V.Tikhonravov, "Study of the HfO2/SiO2 dichroic laser mirrors having refractive index inhomogeneity," in Optical Interference Coatings, OSA Technical Digest (Optical Society of America, 2013), paper FB.5.

A.V. Tikhonravov, M.K. Trubetskov, S. Sharapova, Zh. Wang,  "Design of coatings in EUV, soft x-ray and x-ray spectral regions," in Optical Interference Coatings, OSA Technical Digest (Optical Society of America, 2013), paper TB.6.

A.V. Tikhonravov, M.K. Trubetskov, I. Kozlov, S. Alexeev, P. Konotopov, V. Zhupanov,  "Correlated choice of design and monitoring strategy," in Optical Interference Coatings, OSA Technical Digest (Optical Society of America, 2013), paper WB.3.

M.K. Trubetskov, T.V. Amotchkina, A.V. Tikhonravov,  "Design of multilayer optical coatings with high stability to refractive index variations," in Optical Interference Coatings, OSA Technical Digest (Optical Society of America, 2013), paper TD.3.

A.V. Tikhonravov, M.K. Trubetskov, S. Sharapova, Zh. Wang,  "Design of aperiodic multilayers for EUV applications," in Optical Interference Coatings, OSA Technical Digest (Optical Society of America, 2013), paper TB.8.

V. Pervak, Y. Pervak, M.K. Trubetskov,  "Maximum group delay dispersion achievable with multilayer dispersive mirrors," in Optical Interference Coatings, OSA Technical Digest (Optical Society of America, 2013), paper WD.2. 

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Icons 100x100 1OptiLayer provides user-friendly interface and a variety of examples allowing even a beginner to effectively start to design and characterize optical coatings.        Read more...

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