Publikationen
Zeige Ergebnisse 21 - 40 von 84
Shumakova, V., Pecile, V. F., Fellinger, J., Leskowschek, M., Aldia, P. E. C., Mayer, A. S., Perner, L. W., Salman, S., Fan, M., Balla, P., Schilt, S., Heyl, C. M., Hartl, I., Porat, G., & Heckl, O. H. (2022). Spectrally tunable high-power Yb:fiber chirped-pulse amplifier. Photonics Research, 10(10), 2309-2316. https://doi.org/10.1364/PRJ.465883
Cole, G., Wittwer, V., Perner, L. W., Winkler, G., Mayer, A., Heckl, O. H., & Follman, D. (2022). Substrate-transferred stacked optical coatings. (Patent Nr. US20220187515A1). https://patents.google.com/patent/US20220187515A1/
Perner, L. W., Winkler, G., Truong, G.-W., Follman, D., Fellinger, J., Prinz, M., Puchegger, S., Cole, G. D., & Heckl, O. H. (2022). High-Accuracy Measurement of Mid-IR Refractive Indices of GaAs/AlGaAs in Thin-Film Multilayers. in R. Sargent, & A. Sytchkova (Hrsg.), Optical Interference Coatings Conference (OIC) 2022: Vancouver, British Columbia Canada 19–24 June 2022 Artikel WA.5 Optica Publishing Group. https://doi.org/10.1364/OIC.2022.WA.5
Perner, L. W., Winkler, G., Truong, G.-W., Follman, D., Fellinger, J., Prinz, M., Puchegger, S., Cole, G. D., & Heckl, O. H. (2022). High-Accuracy Measurement of Mid-IR Refractive Indices of GaAs/AlGaAs in Thin-Film Multilayers. Cavity Enhanced Spectroscopy 2022, Lecco, Italien.
Perner, L. W., Truong, G.-W., Winkler, G., Zhao, G., Follman, D., Bailey, D. M., Nguyen, C., Prinz, M., Fleisher, A. J., Cole, G. D., & Heckl, O. H. (2022). Progress towards a 100 000 finesse optical cavity in the mid-infrared. 130-130. FLAIR 2022 - Field Laser Applications in Industry and Research 2022, Aix-les-Bains, Frankreich.
Truong, G.-W., Perner, L. W., Winkler, G., Zhao, G., Bachmann, D., Mayer, A. S., Fellinger, J., Follman, D., Heu, P., Deutsch, C., Bailey, D. M., Puchegger, S., Fleisher, A. J., Heckl, O. H., & Cole, G. D. (2022). Progress Towards a > 100,000 Finesse Optical Cavity at 4.5 µm. in Optical Interference Coatings Conference (OIC) 2022 Artikel WB.1 Optica Publishing Group. https://doi.org/10.1364/OIC.2022.WB.1
Salman, S., Fan, M., Tünnermann, H., Balla, P., Darvill, J., Laumer, D., Pecile, V., Fellinger, J., Shumakova, V., Mahnke, C., Ma, Y., Mohr, C., Heckl, O. H., Heyl, C. M., & Hartl, I. (2022). Smart and agile 84 W fs Yb-fiber laser for spectroscopy. in 2022 Conference on Lasers and Electro-Optics (CLEO): Proceedings, San Jose, California May 15-20, 2022 (S. 1-2). IEEE. https://ieeexplore.ieee.org/document/9890738
Shumakova, V., Schubert, E., Balciunas, T., Matthews, M., Alisauskas, S., Mongin, D., Pugzlys, A., Kasparian, J., Baltuska, A., & Wolf, J.-P. (2021). Laser induced aerosol formation mediated by resonant excitation of volatile organic compounds. Optica, 8(10), 1256-1261. https://doi.org/10.1364/OPTICA.434659
Fellinger, J., Winkler, G., Aldia, P. E. C., Mayer, A. S., Shumakova, V., Perner, L. W., Pecile, V. F., Martynkien, T., Mergo, P., Sobon, G., & Heckl, O. H. (2021). Simple approach for extending the ambiguity-free range of dual-comb ranging. Optics Letters, 46(15), 3677-3680. https://doi.org/10.1364/OL.427816
Ma, Y., Salman, S. H., Li, C., Mahnke, C., Hua, Y., Droste, S., Fellinger, J., Mayer, A. S., Heckl, O. H., Heyl, C. M., & Hartl, I. (2021). Compact, All-PM Fiber Integrated and Alignment-Free Ultrafast Yb: Fiber NALM Laser With Sub-Femtosecond Timing Jitter. Journal of Lightwave Technology, 39(13), 4431-4438. https://doi.org/10.1109/JLT.2021.3070208
Salman, S., Ma, Y., Gürel, K., Schilt, S., Li, C., Pfäfflein, P., Mahnke, C., Fellinger, J., Droste, S., Mayer, A. S., Heckl, O. H., Südmeyer, T., Heyl, C. M., & Hartl, I. (2021). Comparison of two low-noise CEO frequency stabilization methods for an all-PM Yb:fiber NALM oscillator. OSA Continuum, 4(6), 1889-1896. https://doi.org/10.1364/OSAC.424340
Heckl, O. H., Fellinger, J., & Winkler, G. (Angenommen/Im Druck). DUAL-COMB GENERATION FROM A SINGLE LASER CAVITY VIA SPECTRAL SUBDIVISION. (Patent Nr. CN 110247290 B).
Winkler, G., Perner, L. W., Truong, G.-W., Zhao, G., Bachmann, D., Mayer, A., Fellinger, J., Follman, D., Heu, P., Deutsch, C., Bailey, D. M., Peelaers, H., Puchegger, S., Fleisher, A. J., Cole, G. D., & Heckl, O. H. (2021). Mid-infrared interference coatings with excess optical loss below 10 ppm. Optica, 8(5), 686-696. https://doi.org/10.1364/OPTICA.405938
Heckl, O. H., & Fellinger, J. (2021). DUAL-COMB RANGING WITH LONG AMBIGUITY-FREE RANGE. Manuskript zur Veröffentlichung eingereicht.
Heckl, O. H., Fellinger, J., & Winkler, G. (Angenommen/Im Druck). DUAL-COMB GENERATION FROM A SINGLE LASER CAVITY VIA SPECTRAL SUBDIVISION. https://patentimages.storage.googleapis.com/bc/56/00/c0980f35a16950/US10965088.pdf
Pupeza, I., & Heckl, O. H. (2021). Method and device for electric-field-resolved spectroscopy employing a multiple-repetition-rate femtosecond master oscillator. (Patent Nr. PCT/EP2021/057079).
Heckl, O. H., & Pupeza, I. (2021). Method and spectroscopic measuring apparatus for measuring a spectral response of a sample. Manuskript zur Veröffentlichung eingereicht.
Fellinger, J., Winkler, G., Mayer, A. S., Shumakova, V., Perner, L. W., Collin Aldia, P. E., Pecile, V. F., Martynkien, T., Mergo, P., Sobon, G., & Heckl, O. H. (2021). Simple Approach for Ambiguity-Free Dual-Comb Ranging Using an Intrinsically Modulated Single-Cavity Laser Source. in The European Conference on Lasers and Electro-Optics 2021, Munich Germany, 21–25 June 2021 Artikel cf_9_3 Optica Publishing Group. https://opg.optica.org/abstract.cfm?uri=CLEO_Europe-2021-cf_9_3
Ma, Y., Salman, S., Li, C., Mahnke, C., Hua, Y., Fellinger, J., Mayer, A. S., Heckl, O. H., Heyl, C., & Hartl, I. (2021). Sub-fs timing jitter of an 88 fs all-PM fiber integrated ultrafast Yb NALM oscillator. Conference on Lasers and Electro-Optics, Artikel STh2G.4. https://opg.optica.org/abstract.cfm?uri=CLEO_SI-2021-STh2G.4
Mayer, A. S., Grosinger, W., Fellinger, J., Winkler, G., Perner, L. W., Droste, S., Salman, S. H., Li, C., Heyl, C. M., Hartl, I., & Heckl, O. H. (2020). Flexible all-PM NALM Yb:fiber laser design for frequency comb applications: operation regimes and their noise properties. Optics Express, 28(13), 18946-18968. Artikel 18946. https://doi.org/10.1364/OE.394543
Zeige Ergebnisse 21 - 40 von 84
