Publications

If you are interested in learning more about our technology please visit the Dantus Group Publications Web Page where you will find the original scientific articles. If you are specifically interested in MIIPS we suggest you look up publication numbers 72, 85, 89, 95, 96.

Selected MIIPS®-related publications

General MIIPS®:

• H. Wang, M. Chini, Y. Wu, E. Moon, H. Mashiko and Z. Chang, Carrier–envelope phase stabilization of 5-fs, 0.5-mJ pulses from adaptive phase modulator, Applied Physics B: Lasers and Optics, July 2009

• Chao-Kuei Lee, Shin-Cheng Liu, and Wei-Chi Su, Ultra-broadband MIIPS measurement with angle-dithering technique, 2009 APS March Meeting Session C1

• G.T. Nogueira, B. Xu, Y. Coello, F.C. Cruz, M. Dantus “Broadband 2.12 GHz Ti : sapphire laser compressed to 5.9 femtoseconds using MIIPS”, Optics Express, 16, 10033 (2008)

• V. Lozovoy, B. Xu, Y. Coello, M. Dantus, "Direct measurement of spectral phase for ultrashort laser pulses," Optics Express 16, 592 (2008).

• He Wang, Yi Wu, Chengquan Li, Hiroki Mashiko, Steve Gilbertson, and Zenghu Chang, "Generation of 0.5 mJ, few-cycle laser pulses by an adaptive phase modulator," Opt. Express 16, 14448-14455 (2008)

• Y. Coello, V.V. Lozovoy, T.C. Gunaratne, B.W. Xu, I. Bourkhovich, C.H. Tseng, T. Weinacht, M. Dantus, “Interference without an interferometer: a different approach to measuring, compressing, and shaping ultrashort laser pulses”, JOSA B, 25, A140 (2008)

• Bojan Resan, Estelle Coadou, Alan Fry, Thai Truong, Willy Supatto, and Scott Fraser, Closed loop control of ultrashort laser pulses at the sample, Laser Pulse Shaping and Coherent Control of Molecules, Brijuni, Croatia (2007)

• Y. Coello, B. Xu, T. L. Miller, V. V. Lozovoy, and M. Dantus, "Group-velocity dispersion measurements of water, seawater, and ocular components using multiphoton intrapulse interference phase scan (MIIPS)" Appl. Opt. 46, 8394 (2007).

• Bojan Resan, Art Magana, Steve Fournier, Geoffrey Germann, Jean-Marc Heritier, William Tulloch, and Alan Fry, Pulse shaping, characterization, and phase compensation system for enhanced ultrafast laser performance, Proc. SPIE, Vol. 6451, (2007)

• M. Dantus, V.V. Lozovoy, and I. Pastirk, "MIIPS characterizes and corrects femtosecond pulses," Laser Focus World, May (2007).

• B. Xu, Y. Coello, V. V. Lozovoy, D. A. Harris, M. Dantus, "Pulse shaping of octave spanning femtosecond laser pulses," Optics Express 14, 10939-10944 (2006).

• B. Xu, J. M. Gunn, J. M. Dela Cruz, V. V. Lozovoy, M. Dantus, “Quantitative investigation of the MIIPS method for phase measurement and compensation of femtosecond laser pulses,” J. Optical Society of America B 23, 750-759 (2006).

• V. V. Lozovoy, I. Pastirk, and M. Dantus, "Multiphoton intrapulse interference 4; Characterization and compensation of the spectral phase of ultrashort laser pulses," Optics Letters 29, 775-777 (2004).

• M. Dantus, V. V. Lozovoy, and I. Pastirk, "Measurement and Repair: The femtosecond Wheatstone Bridge," OE Magazine, 9 (2003).

About MIIPS®, Microscopy and Biomedical Imaging:

• M. Dantus, D. Pestov, Y. Andegeko, “Better results from ultrafast nonlinear microscopy”, Bio Optics World, March (2009)

• P. Xi, Y. Andegeko, D. Pestov, V. V. Lozovoy, M. Dantus, “Two-photon imaging using adaptive phase compensated ultrashort laser pulses” J. Biomed. Opt., Vol. 14, 014002 (2009)

• Bi-Chang Chen and Sang-Hyun Lim, Optimal Laser Pulse Shaping for Interferometric Multiplex Coherent Anti-Stokes Raman Scattering Microscopy, J. Phys. Chem. B, 2008, 112 (12), pp 3653–3661

• Meng Cui, Coherent Raman scattering: applications in imaging and sensing, 2009, PhD thesis, University of Michigan

• Janelle Shane; Michael Mazilu; Woei Ming Lee; Kishan Dholakia, Optical trapping using ultrashort 12.9fs pulses, Proc. SPIE, Vol. 7038, (2008)

• V. V. Lozovoy, Y. Andegeko, X. Zhu, M. Dantus, “Applications of ultrashort shaped pulses in microscopy and for controlling chemical reactions,” Chemical Physics, 350, 118 (2008)

• Marcos Dantus, Dmitry Pestov Yair Andegeko, “Nonlinear optical imaging sub-10 fs pulses,” Chapter on Nonlinear Optical Imaging (2008).

• Peng Xi, Y. Andegeko, L. R. Weisel, V. V. Lozovoy, M. Dantus, “Greater signal, increased depth, and less photobleaching in two-photon microscopy with 10 fs pulses,” Opt. Communication 281, 1841-1849 (2008).

• Lim SH, Caster AG, Nicolet O, et al., Chemical imaging by single pulse interferometric coherent anti-Stokes Raman scattering microscopy, Journal of Physical Chemistry B,Vol.110,5196-5204 (2006)

• L. Schelhas, J. C. Shane, M. Dantus, “Advantages of ultrashort phase-shaped pulses for selective two-photon activation and biomedical imaging,” Nanomedicine: Nanotechnology, Biology, and Medicine, Vol. 2, Issue 3, 177-181 (2006).

• J. M. Dela Cruz, V. V. Lozovoy, and M. Dantus, "Coherent control improves biomedical imaging with ultrashort shaped pulses," Journal of Photochemistry and Photobiology A-Chemistry 180, 307-313 (2006).

• Lim SH, Caster AG, Leone SR, Single-pulse phase-control interferometric coherent anti-Stokes Raman scattering spectroscopy, Physical Review A, Vol.72,041803 (2005)

• J. M. Dela Cruz, I. Pastirk, M. Comstock, V. V. Lozovoy, and M. Dantus, "Use of coherent control methods through scattering biological tissue to achieve functional imaging," Proceedings of the National Academy of Sciences of the United States of America 101, 16996-17001 (2004).

• I. Pastirk, J. M. Dela Cruz, K. A. Walowicz, V. V. Lozovoy, and M. Dantus, "Selective two-photon microscopy with shaped femtosecond pulses," Optics Express 11, 1695 (2003).

About MIIPS® and amplified pulses:

• I. Pastirk, B. Resan, A. Fry, J. MacKay, M. Dantus, “No loss spectral phase correction and arbitrary phase shaping of regeneratively amplified femtosecond pulses using MIIPS,” Optics Express, Vol. 14, Issue 20, pp. 9537-9543 (2006).

• D. A. Harris, J. C. Shane, V. V. Lozovoy, and M. Dantus, "Automated phase characterization and adaptive pulse compression using Multiphoton Intrapulse Interference Phase Scan in air,” Optics Express, Vol. 15, 1932-1938 (2007).

• I. Pastirk, X. Zhu, R. M. Martin, M. Dantus, "Remote characterization and dispersion compensation of amplified shaped femtosecond pluses using MIIPS," Optics Express, Vol. 14, Issue 19, pp. 8885-8889 (2006).

About MIIPS® and chemical recognition/detection:

• H. Li, D. A. Harris, B. Xu, P. J. Wrzesinski, V. V. Lozovoy, and M. Dantus, "Single-Beam Coherent Anti-Stokes Raman Scattering for Standoff Detection," Optics & Photonics News 19, 46-46 (2008)

• H. Li, D. A. Harris, B. Xu, P. J. Wrzesinski, V. V. Lozovoy, and M. Dantus, "Coherent mode-selective Raman excitation towards standoff detection," Optics Express 16, 5499-5504 (2008)

• Dmitry Pestov, Xi Wang, Robert K. Murawski, Gombojav O. Ariunbold, Vladimir A. Sautenkov, and Alexei V. Sokolov, "Pulse shaping for mode-selective ultrafast coherent Raman spectroscopy of highly scattering solids," J. Opt. Soc. Am. B 25, 768-772 (2008)

• I. Pastirk, X, Zhu, V. V. Lozovoy, and M. Dantus “Femtosecond pulse shaping adds a new dimension to mass spectrometry,” Applied Optics, 46, 4041-4045 (July 2007)

• I. Pastirk, M. Kangas, and M. Dantus, "Multidimensional analytical method based on binary phase shaping of femtosecond pulses," J. Phys. Chem. A 109, 2413-2416 (2005)