VENTEON products are leading-edge technology and are used for high-ranked research activities throughout the world. Applications range from optical metrology and precision spectroscopy to ultrafast spectroscopy, optical coherence tomography (OCT), coherent control, ultrawideband terahertz generation, electro-optical sampling and seeding of ultrafast amplifiers. A selected list of journal papers using VENTEON products is listed below.

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  • Whitepaper: Shortest CEP stabilised Ti:Sapphire pulse.

  • Whitepaper: CEO/CEP stabilisation of Tisapphire femtosecond lasers without AOM

Selected Journal Paper

  • S. Prinz, M. Haefner, M. Schultze, C.Y. Teisset, R. Bessing, K. Michel, R. Kienberger, and T. Metzger, "Active pump-seed-pulse synchronization for OPCPA with sub-2-fs residual timing jitter," Optics Express, Vol. 22 Issue 25, 31050 - 31056 (2014).

  • M. Puppin, Y. Deng, O. Prochnow, J. Matyschok, T. Binhammer, U. Morgner, M. Wolf, R. Ernstorfer, "Fiber-Slab-Pumped OPCPA for XUV-Based Time-Resolved Photoelectron Spectroscopy at 500 kHz Repetition Rate," International Conference on Ultrafast Phenomena (2014).

  • A. Harth, P. Rudawski, C. Guo, M. Miranda, E. Lorek, E. Witting-Larsen, C. Heyl, J. Matyschok, O. Prochnow, T. Binhammer, U. Morgner, A. L'Huillier, C. L Arnold, "CEP dependent high-order harmonic generation at 200 kHz repetition rate," CLEO, STh3E. 3 (2014).

  • A. Harth, P. Rudawski, C. Guo, M. Miranda, E. Lorek, E. Marsell, E. W. Larsen, C. Heyl, J. Matyschok, T. Binhammer, U. Morgner, A. Mikkelsen, A. L'Huillier, C. Arnold, "High repetition rate XUV laser source based on OPCPA for photoemission electron microscopy applications," High-Intensity Lasers and High-Field Phenomena (HILAS) 2014, Talk HTu2C.2 (2014).

  • J. Matyschok, T. Binhammer, T. Lang, O. Prochnow, S. Rausch, P. Rudawski, A. Harth, M. Miranda, C. Guo, E. Lorek, J. Mauritsson, C. L. Arnold, A. L'Huillier, and U. Morgner, "Compact, high-repetition rate OPCPA system for high harmonic generation," Proc. SPIE 8972, Frontiers in Ultrafast Optics: Biomedical, Scientific, and Industrial Applications XIV, 89720L (2014).

  • J. Matyschok, T. Binhammer, T. Lang, O. Prochnow, S. Rausch, P. Rudawski, M. Miranda, C. L. Arnold, A. L'Huillier, and U. Morgner, "Compact, high-repetition rate OPCPA system for high harmonic generation," LASE SPIE Photonics West (Frontiers in Ultrafast Optics: Biomedical, Scientific and Industrial Applications XIV) Paper 8972-21 (2014).

  • J. Matyschok, T. Lang, T. Binhammer, O. Prochnow, S. Rausch, M. Schultze, A. Harth, P. Rudawski, C. Arnold, A. L' Huillier, and U. Morgner, "Temporal and spatial effects inside a compact and CEP stabilized, few-cycle OPCPA system at high repetition rates," Optics Express, Vol. 21 Issue 24, pp.29656-29665 (2013).

  • F. J. Furch, S. Birkner, F. Kelkensberg, A. Giree, A. Anderson, C. P. Schulz, and M. J. J. Vrakking, "Carrier-envelope phase stable few-cycle pulses at 400 kHz for electron-ion coincidence experiments," Optics Express, Vol. 21, Issue 19, pp. 22671-22682 (2013).

  • T. Lang, A. Harth, J. Matyschok, T. Binhammer, M. Schultze, and U. Morgner, "Impact of temporal, spatial and cascaded effects on the pulse formation in ultra-broadband parametric amplifiers," Optics Express, Vol. 21, Issue 1, pp. 949-959 (2013).

  • J. Matyschok, T. Binhammer, T. Lang, O. Prochnow, S. Rausch, P. Rudawski, C. L. Arnold, A. L'Huillier, and U. Morgner, "Ultra-stable fiber pumped CEP-stabilized dual stage OPCPA System," in 2013 International Quantum Electronics Conference, (2013), paper CFIE_9_1.

  • C. L Arnold, M. Miranda, P. Rudawski, J. Guo, C.M. Heyl, W. Witting-Larsen, E. Lorek, J. Mauritsson, T. Binhammer, O. Prochnow, E. Marsell, A. Mikkelsen and A. L´Huillier, "High repetition rate attosecond source based on OPCPA laser technology," 4th International Conference on Attosecond Physics 2013.

  • Y. Deng, M. Puppin, M. Krenz, O. Prochnow, J. Matyschok, T. Binhammer, M. Wolf, R. Ernstorfer, "High Power OPCPA system for XUV sources at 500 kHz," Conference on High Intensity Laser and attosecond sience in Israel, 2013.

  • D. C. Flynn, A. R. Bhagwat, and J. P. Ogilvie, "Chemical-contrast imaging with pulse-shaping based pump-probe spectroscopy," Proc. SPIE 8588, Multiphoton Microscopy in the Biomedical Sciences XIII, 85881Z (2013).

  • N. Pfullmann, C. Waltermann, M. Noack, S. Rausch, T. Nagy, C. Reinhardt, M. Kovacev, V. Knittel, R. Bratschitsch, D. Akemeier, A. Hütten, A. Leitenstorfer, and U. Morgner, "Bow-tie nano-antenna assisted generation of extreme ultraviolet radiation," New J. Phys. Vol. 15, pp 093027 (2013).

  • A. Harth, M. Schultze, T. Lang, T. Binhammer, S. Rausch, and U. Morgner, "Spectra spanning over 1.5 Octaves from a Two-Color Pumped OPCPA System," in Conference on Lasers and Electro-Optics 2012, OSA Technical Digest (2012), paper CTh1N.5.

  • S. K. Das, M. Bock, R. Grunwald, B. Borchers, J. Hytti, G. Steinmeyer, D. Ristau, T. Vockerodt, and U. Morgner, "Non-instantaneity of Chi(3) nonlinear optical effects," in Conference on Lasers and Electro-Optics 2012, OSA Technical Digest (2012), paper CM1J.4.

  • J. Matyschok, O. Prochnow, D. Steingrube, T. Binhammer, S. Rausch und U. Morgner, "New compact and stable SPIDER-setup for complete pulse characterization for pulse durations up to several 10 ps " in Solid State, Fibre, and Waveguide Coherent Light Sources, 5th EPS-QEOD EUROPHOTON CONFERENCE (2012), Poster WeP.10

  • S. K. Das, C. Schwanke, A. Pfuch, W. Seeber, M. Bock, G. Steinmeyer, T. Elsaesser, and R. Grunwald, "Highly efficient THG in TiO2 nanolayers for third-order pulse characterization," Opt. Express 19, 16985-16995 (2011).

  • Michael Krueger, Markus Schenk, and Peter Hommelhoff, "Attosecond control of electrons emitted from a nanoscale metal tip," Nature 475, 78-81 (2011).

  • J. Oi, S. Onishi, K. Matuishi, T. Harada, and F. Kannari, "Measurement of Femtosecond Plasmon Response with Cross-correlation Dark-field Microscopy," in Proceedings of the International Quantum Electronics Conference and Conference on Lasers and Electro-Optics Pacific Rim 2011, (Optical Society of America, 2011), paper J707.

  • D. Pestov, B. Xu, H. Li, and Marcos Dantus, "Delivery and characterization of sub-8fs laser pulses at the imaging plane of a two-photon microscope", in Proceedings of SPIE 7903, Multiphoton Microscopy in the Biomedical Sciences XI, 79033B (2011).

  • B. Xu, Y. Coello, V. V. Lozovoy, and M. Dantus, "Two-photon fluorescence excitation spectroscopy by pulse shaping ultrabroad-bandwidth, " Applied Optics 49, 6348-6353 (2010).

  • I. Katayama, R. Akai, M. Bito, H. Shimosato, K. Miyamoto, H. Ito, and M. Ashida, "Ultrabroadband terahertz generation using 4-N,N-dimethylamino-4'-N'-methyl-stilbazolium tosylate single crystals," Appl. Phys. Lett 97, 021105 (2010).

  • T. Binhammer, S. Rausch, M. Jackstadt, G. Palmer, and U. Morgner, "Phase-stable Ti:sapphire oscillator quasi-synchronously pumped by a thin-disk laser ," Appl. Phys. B 100, 219--223 (2010).

  • M. Schultze, T. Binhammer, A. Steinmann, G. Palmer, M. Emons, and U. Morgner , "Few-cycle OPCPA system at 143 kHz with more than 1 µJ of pulse energy," Optics Express, 18, 2836--2841 (2010).

  • F. Kannari,.K.Matsuishi, T. Harada, J. Ohi, and Y. Oishi, "Characterization and control of femtosecond localized plasmon using spectral interferometry with SNOM or fringe-resolved autocorrelation with dark-field microscopy," 36th European Conference and Exhibition on Optical Communication (ECOC) (2010), Paper Mo.1.E.4 pp.1,3, 19-23 Sept. 2010
    doi: 10.1109/ECOC.2010.5621113

  • S. Rausch, T. Binhammer, A. Harth, E. Schulz, M. Siegel, and U. Morgner, "Few-cycle oscillator pulse train with constant carrier-envelope-phase and 65 as jitter," Optics Express 17, 20282-20292 (2009).

  • A. Ozawa, W. Schneider, T. W Hänsch, T. Udem and P. Hommelhoff, "Phase-stable single-pass cryogenic amplifier for high repetition rate few-cycle laser pulses," New J. Phys. 11 083029, (2009).

  • S. Rausch, T. Binhammer, A. Harth, F. X. Kärtner, and U. Morgner, "Few-cycle femtosecond field synthesizer," Optics Express, Vol. 16, No. 22, pp. 17410--17419, (2008).

  • K. Isobe, A. Suda, M. Tanaka, F. Kannari, H. Kawano, H. Mizuno, A. Miyawaki, and K. Midorikawa, "Fourier-transform spectroscopy combined with a 5-fs broadband pulse for multispectral nonlinear microscopy," Phys. Rev. A 77, 063832 (2008).

  • S. Rausch, T. Binhammer, A. Harth, J. Kim, R. Ell, Franz X. Kärtner, and U. Morgner, "Controlled waveforms on the single-cycle scale from a femtosecond oscillator," Optics Express, Vol. 16, Issue 13, pp. 9739-9745, (2008).

  • S. Adachi, N. Ishii, T. Kanai, A. Kosuge, J. Itatani, Y. Kobayashi, D. Yoshitomi, K. Torizuka, and S. Watanabe, "5-fs, multi-mJ, CEP-locked parametric chirped-pulse amplifier pumped by a 450-nm source at 1 kHz," Optics Express, Vol. 16, pp. 14341-14352 (2007).

  • P. Hommelhoff, C. Kealhofer, and M. A. Kasevich, "Ultrafast Electron Pulses from a Tungsten Tip Triggered by Low-Power Femtosecond Laser Pulses," Phys. Rev. Lett. 97, 247402 (2006).

  • R. Ell, G. Angelow, W. Seitz, M. Lederer, H. Huber, D. Kopf, J. Birge, and F. X. Kärtner, "Quasi-synchronous pumping of modelocked few-cycle Titanium Sapphire lasers," Optics Express, Vol. 13, Issue 23, pp. 9292-9298 (2005).

  • F.X. Kärtner, U. Morgner, T. Schibli, R. Ell, H.A. Haus, J.G. Fujimoto, E.P. Ippen, "Few-cycle pulses directly from a laser," in: Few-Cycle Laser Pulse Generation and Its Applications, Topics in Applied Physics 95: 73-135 (2004), Springer-Verlag Berlin

  • T. R. Schibli, O. Kuzucu, J. W. Kim, E. P. Ippen, J. G. Fujimoto, F. X. Kärtner, V. Scheuer, G.Angelow, "Towards Single-Cycle Laser Systems," IEEE J. Sel. Top. Quantum Opt. 9, 990-1001 (2003).

  • F. X. Kärtner, U. Morgner, R. Ell, T. R. Schibli, J. Fujimoto, E. P. Ippen, V. Scheuer, G. Angelow, T. Tschudi, "Ultrabroadband Double-Chirped Mirror Pairs for Octave Spectrum Generation," Journal of the Optical Soc. of Am. B 18, 882-5 (2001).

  • R. Ell, U. Morgner, F.X. Kärtner, J.G. Fujimoto, E.P. Ippen, V. Scheuer, M. Tilsch, T. Tschudi, M. J. Lederer, A. Boiko and B. Luther-Davies, "Generation of 5 fs pulses and octave-spanning spectra directly from a Ti:sapphire laser," Optics Letters 26, 373-5 (2001)

For further papers and field of applications please contact: