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         Laser Physics:     more books (100)
  1. Physics of Semiconductor Laser Devices by G. H. B. Thompson, 1980-01
  2. Physics of Continuous Matter: Exotic and Everyday Phenomena in the Macroscopic World by Benny Lautrup, 2004-10
  3. The Physics and Engineering of Solid State Lasers (SPIE Tutorial Texts in Optical Engineering, Vol. TT71) by Yehoshua Kalisky, 2006-03-28
  4. Physics of Strained Quantum Well Lasers by John P. Loehr, 1997-12-31
  5. Ultrashort Laser Pulses in Biology and Medicine (Biological and Medical Physics, Biomedical Engineering)
  6. Coherence Phenomena in Atoms and Molecules in Laser Fields (NATO Science Series B: Physics)
  7. Laser Ablation: Mechanisms and Applications (Lecture Notes in Physics)
  8. Introduction to the Theory of Laser-Atom Interactions (Physics of Atoms and Molecules) by Marvin H. Mittleman, 1993-10-31
  9. Applied Laser Medicine
  10. Laser Speckle and Related Phenomena (Topics in Applied Physics)
  11. Theoretical Femtosecond Physics: Atoms and Molecules in Strong Laser Fields (Springer Series on Atomic, Optical, and Plasma Physics) by Frank Großmann, 2010-11-02
  12. An Introduction to Atomic andMolecular Physics by Wolfgang Demtröder, Wolfgang Demtr÷der, 2005-12-22
  13. Semiconductor-Laser Physics by Weng W. Chow, Stephan W. Koch, et all 1994-04
  14. Laser Plasma Physics: Forces and the Nonlinearity Principle (SPIE Press Monograph Vol. PM75) by Heinrich Hora, 2000-05-22

61. Int. Journal Laser Physics
International Journal laser physics ISSN 1054660X 10thInternational laser physics Workshop LPHYS'01
http://www.gpi.ru/lphys/

62. The Work Of The Laser Physics Group Of H. Walther
The work of the laser physics group of H. Walther can be summarized under thefollowing main topics Quantum phenomena in the radiationatom interactions.
http://mste.laser.physik.uni-muenchen.de/lg/worktop.html
The work of the laser physics group of H. Walther can be summarized under the following main topics: Quantum phenomena in the radiation-atom interactions Laser spectroscopy of trapped and laser-cooled ions Rydberg atoms in strong external fields Multi-photon ionization and harmonic generation by means of femtosecond laser pulses Surface studies using a laser-driven tunneling microscope and molecular scattering Survey of the working groups List of coworkers Max- Planck- Institute University of Munich Selected reprints of year submitted to LMU- homepage to MPQ- homepage last update Mar 4, 1998 mst@

63. The Work Of The Laser Physics Group Of H. Walther In Micromaser, Ion Traps, Lase
Survey on the laser physics group of H. Walther. Quantum phenomena in radiationatominteraction. Laser spectroscopy of trapped and laser-cooled ions and atoms.
http://mste.laser.physik.uni-muenchen.de/lg/selrepri.html
Survey on the laser physics group of H. Walther
Quantum phenomena in radiation-atom interaction Laser spectroscopy of trapped and laser-cooled ions and atoms Rydberg atoms in strong external fields: studies in parameter regions where the classical counterpart of the atom is chaotic Multi-photon ionization and harmonic generation by means of femtosecond laser pulses Surface studies using a laser scanning tunneling and a scanning force microscope and molecular scattering Survey of the activities and coworkers involved Coworkers Max-Planck-Institute Coworkers University of Munich Available Positions
Publications
submitted
to LMU- homepage
to MPQ- homepage last update Nov. 11, 1999

64. Easy Explanation Of Laser Physics
simple guide to understanding lasers
http://members.aol.com/jimb3d/lasers.html

65. Experimental Laser Physics
Physics and Astronomy. Experimental laser physics Lab. The experimental laserphysics laboratory houses experiments studying lasermatter interactions.
http://www.physics.emich.edu/laserlab/
Eastern Michigan University
Physics and Astronomy
Experimental Laser Physics Lab
Contact Dr. Marshall Thomsen
Email:
phy_thomsen@online.emich.edu

The gigawatt glass laser system The experimental laser physics laboratory houses experiments studying laser-matter interactions. Many of these experiments involve photothermal techniques in which information about the absorption of a material is obtained by detecting the change in the sample due to absorption-caused local heating. These techniques can be used to locate and study in detail the defects which give rise to absoprtion in high quality optical materials. During the 1997-1998 academic year, the lab has been funded primarily through Lawrence Livermore National Laboratory and the State of Michigan Research Excellence Fund. The lab uses an extensive range of lasers including:
  • Argon Ion Laser (Spectra-Physics Model 2020-05, 5W) CW Nd: YAG Lasers (Quantronix Series 100, 6W and CVI C-95, 6W) He-Ne Laser (NEC, 20 mW) Diode Laser (790nm-990 nm) Tunable Krypton Ion Laser (Omnichrome Model 643-AP-A01) Custom built Ti-Sapphire Laser
Additional experimental laser stations within the lab....

66. UCT Physics - Solid State And Laser Physics
Solid state and laser physics. Academic staff. D. Ball, BSc (Hons) Cape TownPhD Monash; DT Britton, MSc London PhD London; CM Comrie, MSc Natal PhD Cantab;
http://physicsweb.org/resources/follow/1807
Solid state and laser physics
Academic staff
  • D. Ball, BSc (Hons) Cape Town PhD Monash
  • D. T. Britton , MSc London PhD London
  • C. M. Comrie, MSc Natal PhD Cantab
  • H. S. T. Driver, MSc Cape Town PhD British Columbia
  • M. Härting, dip.ing, dipl.phys.Regensburg; Dr.ing.phys.Munich
  • G. N. v.d.H Robertson, BSc (Hons) Cape Town D Phil Oxon
    Senior research associates
  • S. L. Pityana, BSc (Hons) Sussex PhD Sussex
    PhD students
    MSc students
  • J. A. Anderson, BSc (Hons) Cape Town
  • D. R. Geduld, BSc (Hons) Cape Town
  • R. S. Nemutudi, BSc (Hons) Cape Town
  • E. A. Ratering, BSc (Hons) Cape Town
  • N. B. Viranna, BSc (Hons) Durban
    BSc(Hons) students
  • A. G. Hanbury, BSc Cape Town
  • H. Mortensen, BSc Odense
  • I.W. Schroeder, BSc Cape Town
  • M Weiss, Vordip Freiburg
  • G. Zabow, BSc Cape Town Return
  • 67. Theoretical Atomic, Molecular And Laser Physics
    THEORETICAL ATOMIC, MOLECULAR AND laser physics. Publications. Signaturesof symmetryinduced quantum interference effects observed
    http://www.physik.uni-bielefeld.de/theory/d4/publications.html
    UNIVERSITY OF BIELEFELD DEPARTMENT OF PHYSICS HOME Research Areas ... Guestbook T HEORETICAL A TOMIC, M OLECULAR A ND L ASER P HYSICS
    Publications
    Signatures of symmetry-induced quantum interference effects observed in above-threshold ionization spectra of molecules
    Phys. Rev. A (2001) 040701(R) S-matrix theory of ionisation of polyatomic molecules in an intense laser pulse
    Chem. Phys. Lett., to be published Strong field multiple ionization of Krypton
    H. Maeda, M. Dammasch, U. Eichmann, W. Sandner, A. Becker and F.H.M. Faisal
    Phys. Rev. A. Laser induced inner shell vacancies in doubly ionised argon
    A. Becker, F.H.M. Faisal, Y. Liang, S. Augst, Y. Beaudoin,M. Chaker and S.L. Chin
    J. Phys. B Suppressed Molecular Ionization for a Class of Diatomics in Intense Femtosecond Laser Fields
    Phys. Rev. Lett. Interpretation of momentum distribution of recoil ions from laser induced non-sequential double ionization
    A. Becker and F. H. M. Faisal
    Phys. Rev. Lett. Plasmon-induced photon emission from thin metal films
    U. Schwengelbeck, L. Plaja, L. Roso, E. Conejero Jarque J. Phys. B

    68. Laser Physics In The Field Of Nuclear Physics / Ulrich Schramm
    Translate this page
    http://www.ha.physik.uni-muenchen.de/uschramm/

    69. Laser Physics, Mediphotonics And Quantum Optics
    laser physics, Mediphotonics and Quantum Optics. Laser spectroscopictechniques have been pioneered at City College and are being
    http://www.sci.ccny.cuny.edu/~physdept/gradprogram/laser_physics.html
    Laser Physics, Mediphotonics and Quantum Optics
    Laser spectroscopic techniques have been pioneered at City College and are being used to study dynamical properties of a variety of physical and biological systems. Several laboratories cited in the research sections above make extensive use of laser-scattering and laser-based diagnostic techniques. Beyond this, City College has a comprehensive research program in quantum optics and applied quantum phenomenology. The Institute for Ultrafast Spectroscopy and Lasers encompasses eight laser laboratories located on the second floor of the Science building and the fifth floor of the Engineering building. These laboratories are fully equipped with state-of-the-art femtosecond lasers and instrumentation for modern fast kinetic picosecond and femtosecond spectroscopy. The director of the Institute is Professor Robert Alfano. The research of IUSL is supported by grants for pure and applied science from a broad variety of agencies and industrial organizations. Seven postdoctoral research associates and thirty graduate students work on topics in semiconductor properties, microstructures, polymers, laser-system development, nonlinear optics, signal processing, optical computation and ultrafast phenomena. In recent work, the carrier dynamics in GaAs heterostruc-tures, and phonon relaxation rates in liquids and solids have been studied using nonlinear optics techniques (forward four-wave mixing, Raman-induced phase conjugation). Furthermore, researchers at IUSL made the first observation of the cross phase modulation of a second-harmonic pulse from an intense, primary picosecond pulse propogating in a non-linear crystal. They have also constructed a picosecond-laser-driven Sagnac interferometric switch for implementing various optical logic and arithmetic functions.

    70. Terawatt Laser Physics
    Terawatt laser physics New physics often follows qualitatively newtechniques. In optical physics, one of these developments has
    http://www.physics.utoronto.ca/~marj/TLP.html
    Terawatt Laser Physics:
    New physics often follows qualitatively new techniques. In optical physics, one of these developments has been the introduction of 'chirped-pulse amplification' (CPA) lasers, which have permitted peak laser powers to increase by more than three orders of magnitude, practically overnight. At Toronto, we have built a CPA laser system which produces a pulse a fraction of a picosecond in duration, but nonetheless contains more than a joule of energy-for a peak power greater than a trillion watts, and capable of a focussed intensity greater than 10 W cm
    Toronto's FCM-CPA Terawatt Laser System
    Pulse Contrast
    One of the important aspects of the interaction of high-intensity laser light with matter, particularly solids, is the 'pulse contrast' a measure of the amount of energy deposited on the target before the arrival of the peak of the laser pulse. The output of the Toronto FCM-CPA terawatt laser is one of the most intrinsically 'clean' ultrahigh intensity pulses produced in this research field, due to two aspects of the oscillator.
    Our prototype or seed pulse is produced by a feedback-controlled oscillator, an active/passive modelocked, flashlamp-pumped Nd:glass system which produces a train of microjoule-energy 1 ps pulses. This pulse is grating-expanded, amplified and grating-compressed. Because the recompressed pulse cannot passively be improved over the original pulse, the very good contrast of the oscillator pulse is an important part of the system's final output characteristics. And because the energy of this pulse is several orders of magnitude greater than is typical for such CPA systems, less amplification is needed in the first stage, the regenerative amplifier. In this, the spectral characteristics of the pulse are less degraded, and, as well, less amplified spontaneous emission results, with the result that the background prepulse or pedestal of the final pulse is much improved.

    71. Laser Physics & Non-Linear Optics Group
    Welcome at the laser physics and nonLinear Optics Group. The Laserphysics non-linear optics group aims on mastering the generation
    http://www.tn.utwente.nl/lf/

    Information

    Research

    Education

    Publications
    ...
    Search
    Welcome at the Laser Physics and non-Linear Optics Group
    Our current projects include experiments on laser wake field acceleration (interactions at relativistically high intensities), the properties of frozen light (coherent interactions), advanced optical parametric oscillators (rapid detection of trace gases with high selectivity and sensitivity), the fabrication of Silicon photonic crystals for studying the properties of intense pulse propagation is such materials, free electron lasers (for studying new concepts of material processing), and the development of advanced excimer lasers (for micro-machining or lithography). Light Bullets last modified at 11-Feb-03 by LF-Webmaster

    72. MTU Physics Materials Physics And Laser Physics Lab
    Research Faculty YK Yap. Facilities. Physics, Materials Physics andlaser physics Laboratory. We have some facilities for the synthesis
    http://www.phy.mtu.edu/facilities/materialslaser.html
    Department of Physics Physics Home People Instruction Academic Programs ... Site Map
    Research Faculty
    Y. K. Yap
    Facilities
    Materials Physics and Laser Physics Laboratory
    We have some facilities for the synthesis and characterization of single crystals, thin films and nanostructures. They are designed to meet our needs to understand the properties and growth of some novel materials. They include a plasma-assisted pulsed-laser deposition (PLD) system, a pressurized reacting chamber, a thermal chemical vapor deposition (CVD) system, and a plasma-enhanced CVD system (modified version of a plasma reference cell in the Dislocation Physics Laboratory ). This laboratory has a high-powered ultraviolet laser based on the fourth and fifth harmonic generation of an Nd:YAG laser. This is a nanosecond-pulsed laser integrated to our PLD system and is applicable for the characterization of novel photonics and nonlinear optical (NLO) materials. Other facilities include a Laser Guided Direct Writing (LGDW) system and Laser Guiding of Particles Through Fibers , which are used for the patterning and manipulation of nanostructures on substrates.

    73. Institute Of Laser Physics Russian Academy Of Sciences Siberian
    Scientific Cooperation. . Russian Version, English Version. Phone (3832)33-24-89,E-mail bagayev@laser.nsc.ru. Fax (383-2)33-20-67, URL http//www.laser.nsc.ru.
    http://www.laser.nsc.ru/

    74. Institute Of Laser Physics
    Siberian Branch of RAS Institute of laser physics, Info in Russian. Fullname Siberian Branch of RAS / Institute of laser physics (ILP SB RAS).
    http://www.tech-db.ru/istc/db/inst.nsf/wu/40064
    Siberian Branch of RAS
    Institute of Laser Physics
    Info in Russian General information Full name: Siberian Branch of RAS / Institute of Laser Physics (ILP SB RAS) Address: 13/3, Lavrentyev Ave., Novosibirsk, 630090, Russia, Akademgorodok Telephone: Fax: E-mail: baklanov@ilp.nsc.ru WWW: http://mplp.laser.nsc.ru ISTC relations Technology area/field: ENV-SEM: Environment / Seismic Monitoring
    PHY-OPL: Physics / Optics and Lasers
    PHY-NGD: Physics / Fluid Mechanics and Gas Dynamics
    OBS-NAT: Other Basic Sciences / Natural Resources and Earth Sciences
    ENV-APC: Environment / Air Pollution and Control
    ENV-MIN: Environment / Monitoring and Instrumentation
    PHY-RAW: Physics / Radiofrequency Waves
    BIO-BCH: Biotechnology and Life Sciences / Biochemistry
    BIO-CGM: Biotechnology and Life Sciences / Cytology, Genetics and Molecular Biology
    BIO-PAT: Biotechnology and Life Sciences / Pathology BIO-PHA: Biotechnology and Life Sciences / Pharmacology BIO-PHS: Biotechnology and Life Sciences / Physiology BIO-OTH: Biotechnology and Life Sciences / Other CHE-ANL: Chemistry / Analytical Chemistry PRA: ISTC relation: PRA Participant ISTC Party: Russia More information

    75. State Unitary Enterprise Research Institute For Laser Physics
    Vavilov State Optical Institute (GOI) State Unitary Enterprise ResearchInstitute for laser physics, Info in Russian. General information,
    http://www.tech-db.ru/istc/db/inst.nsf/wu/1569
    Vavilov State Optical Institute (GOI)
    State Unitary Enterprise Research Institute for Laser Physics
    Info in Russian General information Full name: Vavilov State Optical Institute (GOI), State Unitary Enterprise Research Institute for Laser Physics (ILPh) Address: 12, Birzhevaya str., St Petersburg, 199034, Russia Telephone: Fax: E-mail: mak@ilph.spb.su ISTC relations Technology area/field: PHY-OPL: Physics / Optics and Lasers
    SAT-OTH: Space, Aircraft and Surface Transportation / Other
    INF-ELE: Information and Communications / Microelectronics and Optoelectronics
    SAT-EXP: Space, Aircraft and Surface Transportation / Extraterrestrial Exploration
    BIO-BCH: Biotechnology and Life Sciences / Biochemistry
    MAT-CER: Materials / Ceramics
    CHE-RAD: Chemistry / Photo and Radiation Chemistry
    MAN-ROB: Manufacturing Technology / Robotics
    SAT-AST: Space, Aircraft and Surface Transportation / Astronomy
    INF-IMA: Information and Communications / High-Definition Imaging and Displays MAN-MCH: Manufacturing Technology / Machinery and Tools OBS-NAT: Other Basic Sciences / Natural Resources and Earth Sciences BIO-PAB: Biotechnology and Life Sciences / Public Health INF-SOF: Information and Communications / Software INF-SIG: Information and Communications / Sensors and Signal Processing ISTC Projects: PRA: ISTC relation: Project Participant, PRA Participant, TA Participant

    76. Atomic Physics And Laser Physics
    Atomic Physics and laser physics Group, Department of Physics, Universityof Otago. University logo. This group carries out theoretical
    http://www.physics.otago.ac.nz/~manson/laser.html
    Atomic Physics and Laser Physics Group,
    Department of Physics, University of Otago
    This group carries out theoretical and experimental research on the interaction of light with atoms. The main emphasis has been on comparing theory and experiment as closely as possible.
    Currently, the two major projects in the group are:
      B ose E instein ... ondensation
      A Bose-Einstein Condensate is an extraordinary new state of matter that owes its very existence to the quantum statistics of identical particles with integer spin quantum numbers. It was predicted theoretically by Bose and Einstein 70 years ago, but first observed in 1995. We have recently succeeded in producing a condensate, joining the small number of groups around the world which have also observed BEC. R aman L aser
      Raman lasers are different from most lasers because the pumping process is stimulated Raman scattering ; a coherent process which directly transfers the atom from the initial to the final state without occupying the intermediate excited state. A Raman laser operating in a standard HeNe laser pumped by a dye laser was discovered and first investigated by this group. We are now

    77. Laser Physics Division, CAT
    laser physics Division. There are several laboratories at CAT involved inresearch and development related to lasers. Head, laser physics Division.
    http://www.cat.ernet.in/nlo/
    Laser Physics Division
    There are several laboratories at CAT involved in research and development related to lasers. Experimental as well as theoretical work is carried out by these laboratories. The structure of the Laser Physics Division is as follows:

    78. Department Of Laser Physics
    Department of laser physics. Head of department Phone Email SándorVarró D.Sc. (36-1) 392 2635 varro@sunserv.kfki.hu. Staff.
    http://www.szfki.hu/lphys/
    Search
    Our Pages:
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    INFORMATION

    DEPARTMENTS

    RESEARCH
    ... PUBLICATIONS (since 2000)
    Department of Laser Physics
    Head of department

    Phone:
    E-mail:
    varro@sunserv.kfki.hu
    Staff
    Interaction of strong laser light with matter
    farkas@szfki.hu vs@szfki.hu banyasz@szfki.hu ...
    Gas laser research
    (D.Sc) karcsi@sunserv.kfki.hu bano@sunserv.kfki.hu csillag@szfki.hu (Ph.D) donko@sunserv.kfki.hu hartmann@sunserv.kfki.hu phorvath@sunserv.kfki.hu horvath@szfki.hu ... mjanossy@szfki.hu Kinga Kutasi (Ph.D student) kutasi@sunserv.kfki.hu mezeipal@szfki.hu (Ph.D. student) szocs@szfki.hu
    Optical studies of metal and fullerene films
    Zsolt Szentirmay (D.Sc) szenti@szfki.hu kroo@office.mta.hu Zsolt Lenkefi (research fellow) lenkefi@szfki.hu hoffmann@szfki.hu selm@szfki.hu

    79. Department Of Laser Physics -- Research Fields
    Department of laser physics. Interaction of strong laser light with matter.The most multiphoton processes. laser physics, 7, 583 (1997).
    http://www.szfki.hu/lphys/fields.html
    Search
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    DEPARTMENTS

    RESEARCH
    ... PUBLICATIONS (since 2000)
    Department of Laser Physics
    Interaction of strong laser light with matter
    The most important subjects studied by our research group:
    • Construction of a laser system producing petawatt (10 W) intensities based on the "Chirped Pulse Amplification" principle. Experimental studies and theoretical interpretation of the new type photoelectron emission processes revealed by us using far infrared lasers. Realisation of extreme intensive electron sources and special light (e.g. X-ray) sources, which deliver extreme short (10 sec) duration strong electron and light pulses, with the help of the laser induced multiphoton photoeffect and multiharmonic generation on metal surfaces. Theoretical description of the new type laser acceleration (up to GeV energies) and the strong (Terawatt intensities) X-ray pulse generation, based on the laser induced multiphoton absorption process of electrons, observed by us earlier at collisions of electron pulses and laser pulses
    Further information:
      Gy. Farkas, E-Mail: farkas@szfki.hu

    80. Laser Physics - Addison Wesley / Benjamin Cummings Catalog
    laser physics. © Copyright 2002 AW Higher Education Group, a division of PearsonEducation, a Pearson plc company. All rights reserved. Legal disclaimer.
    http://www.aw.com/catalog/academic/course/1,4095,70237,00.html
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    AW Higher Education Group
    , a division of Pearson Education , a Pearson . E-mail webmaster@awl.com

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