Books on the topic 'Laser Molecular Interaction'

To see the other types of publications on this topic, follow the link: Laser Molecular Interaction.

Create a spot-on reference in APA, MLA, Chicago, Harvard, and other styles

Select a source type:

Consult the top 50 books for your research on the topic 'Laser Molecular Interaction.'

Next to every source in the list of references, there is an 'Add to bibliography' button. Press on it, and we will generate automatically the bibliographic reference to the chosen work in the citation style you need: APA, MLA, Harvard, Chicago, Vancouver, etc.

You can also download the full text of the academic publication as pdf and read online its abstract whenever available in the metadata.

Browse books on a wide variety of disciplines and organise your bibliography correctly.

1

Lalanne, J. R. Laser molecule interaction: Laser physics and molecular nonlinear optics. New York: Wiley, 1996.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
2

Scottish Universities Summer School in Physics (60th 2005 St. Andrews, Scotland). Laser-plasma interactions. Edited by Jaroszynski Dino A, Bingham R. A, and Cairns R. A. Boca Raton: Taylor & Francis, 2009.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
3

A, Jaroszynski Dino, Bingham R. A, and Cairns R. A, eds. Laser-plasma interactions. Boca Raton: Taylor & Francis, 2009.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
4

Advances of atoms and molecules in strong laser fields. Singapore: World Scientific, 2015.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
5

Olaf, Hartmann, Marton Johann, Suzuki Ken, Widmann Eberhard, Zmeskal Johann, and SpringerLink (Online service), eds. EXA 2011: Proceedings of the International Conference on Exotic Atoms and Related Topics (EXA 2011) held in Vienna, Austria, September 5-9, 2011. Dordrecht: Springer Netherlands, 2012.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
6

N, Bloembergen, Rahman N. K, Rizzo A, and Società italiana di fisica, eds. Atoms, molecules and quantum dots in laser fields: Fundamental processes : Pisa, 12-16 June 2000. Bologna: Italian Physical Society, 2001.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
7

Antonio, Rizzo, Rahman Naseem, and Bloembergen Nicolas, eds. Atoms, molecules and quantum dots in laser fields: Fundamental processes : Pisa, 12- 16 June 2000. Bologna: Italian physical society, 2001.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
8

Astapenko, Valeriy. Interaction of Ultrashort Electromagnetic Pulses with Matter. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
9

Mittleman, Marvin H. Introduction to the theory of laser-atom interactions. 2nd ed. New York: Plenum Press, 1993.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
10

Hee, Nam Chang, Janulewicz Karol A, and SpringerLink (Online service), eds. X-Ray Lasers 2010: Proceedings of the 12th International Conference on X-Ray Lasers, 30 May–4 June 2010, Gwangju, Korea. Dordrecht: Springer Netherlands, 2011.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
11

Dave, Riley, and SpringerLink (Online service), eds. X-Ray Lasers 2008. Dordrecht: Springer Netherlands, 2009.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
12

service), SpringerLink (Online, ed. Laser-Induced Breakdown Spectroscopy: Fundamentals and Applications. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
13

Majumdar, Jyotsna Dutta. Laser-Assisted Fabrication of Materials. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
14

International School of Physics "Enrico Fermi" (1995 Varenna, Italy). Coherent and collective interactions of particles and radiation beams: [proceedings of the International School, course 131] = Interazioni coerenti e colletive di paricelle e fasci di radiazione. Amsterdam: IOS Press, 1996.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
15

Introduction to complex plasmas. Heidelberg: Springer, 2010.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
16

Melrose, Donald. Quantum Plasmadynamics: Magnetized Plasmas. New York, NY: Springer New York, 2013.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
17

Heliophysical processes. Heidelberg: Springer, 2010.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
18

J, Keyser, Pierrard V, and SpringerLink (Online service), eds. The Earth’s Plasmasphere: A CLUSTER and IMAGE Perspective. New York, NY: Springer New York, 2009.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
19

Plasma physics: An introduction to laboratory, space, and fusion plasmas. Heidelberg: Springer, 2010.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
20

Symmetries of integro-differential equations: With applications in mechanics and plasma physics. Dordrecht: Springer, 2010.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
21

service), SpringerLink (Online, ed. Large-Scale Perturbations of Magnetohydrodynamic Regimes: Linear and Weakly Nonlinear Stability Theory. Berlin, Heidelberg: Springer-Verlag Berlin Heidelberg, 2011.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
22

Jacques, Pelletier, and SpringerLink (Online service), eds. Physics of Collisional Plasmas: Introduction to High-Frequency Discharges. Dordrecht: Springer Netherlands, 2012.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
23

Oppermann, Malte. Resolving Strong Field Dynamics in Cation States of CO_2 Via Optimised Molecular Alignment. Springer London, Limited, 2014.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
24

Oppermann, Malte. Resolving Strong Field Dynamics in Cation States of CO_2 via Optimised Molecular Alignment. Springer, 2016.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
25

Resolving Strong Field Dynamics in Cation States of CO_2 via Optimised Molecular Alignment. Springer, 2014.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
26

Suzuki, Ken, Johann Marton, Paul Bühler, Olaf Hartmann, Eberhard Widmann, and Johann Zmeskal. EXA 2011: Proceedings of the International Conference on Exotic Atoms and Related Topics held in Vienna, Austria, September 5-9, 2011. Springer, 2014.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
27

Charged Particle Traps Ii Applications. Springer, 2009.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
28

Astapenko, Valeriy. Interaction of Ultrashort Electromagnetic Pulses with Matter. Springer, 2013.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
29

Mittleman, Marvin H. Introduction to the Theory of Laser-Atom Interactions. Springer, 2012.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
30

Metcalf, Harold, and Peter van der Straten. Atoms and Molecules Interacting with Light: Atomic Physics for the Laser Era. Cambridge University Press, 2016.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
31

Metcalf, Harold, and Peter van der Straten. Atoms and Molecules Interacting with Light: Atomic Physics for the Laser Era. Cambridge University Press, 2016.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
32

Atoms and Molecules Interacting with Light: Atomic Physics for the Laser Era. Cambridge University Press, 2016.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
33

Brabec, Thomas. Strong Field Laser Physics. Springer, 2014.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
34

Strong Field Laser Physics. Springer, 2008.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
35

Lee, Jongmin, Chang Hee Nam, and Karol A. Janulewicz. X-Ray Lasers 2010: Proceedings of the 12th International Conference on X-Ray Lasers, 30 May - 4 June 2010, Gwangju, Korea. Springer Netherlands, 2016.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
36

Pindera, J. T. New Physical Trends in Experimental Mechanics. Springer London, Limited, 2014.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
37

Mackenroth, K. Felix. Quantum Radiation in Ultra-Intense Laser Pulses. Springer, 2016.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
38

Quantum Radiation in Ultra-Intense Laser Pulses. Springer, 2014.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
39

Quantum Transport in Periodically Driven Systems: Theory and Application to Atoms and Molecules Interacting with Interacting with Intense Strong Laser Pulses. World Scientific Publishing Company, 2007.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
40

Noll, Reinhard. Laser-Induced Breakdown Spectroscopy: Fundamentals and Applications. Springer Berlin / Heidelberg, 2014.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
41

Laser-Induced Breakdown Spectroscopy: Fundamentals and Applications. Springer, 2012.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
42

Noll, Reinhard. Laser-Induced Breakdown Spectroscopy: Fundamentals and Applications. Springer, 2012.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
43

Succi, Sauro. Stochastic Particle Dynamics. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780199592357.003.0009.

Full text
Abstract:
Dense fluids and liquids molecules are in constant interaction; hence, they do not fit into the Boltzmann’s picture of a clearcut separation between free-streaming and collisional interactions. Since the interactions are soft and do not involve large scattering angles, an effective way of describing dense fluids is to formulate stochastic models of particle motion, as pioneered by Einstein’s theory of Brownian motion and later extended by Paul Langevin. Besides its practical value for the study of the kinetic theory of dense fluids, Brownian motion bears a central place in the historical development of kinetic theory. Among others, it provided conclusive evidence in favor of the atomistic theory of matter. This chapter introduces the basic notions of stochastic dynamics and its connection with other important kinetic equations, primarily the Fokker–Planck equation, which bear a complementary role to the Boltzmann equation in the kinetic theory of dense fluids.
APA, Harvard, Vancouver, ISO, and other styles
44

Manna, Indranil, and Jyotsna Dutta Majumdar. Laser-Assisted Fabrication of Materials. Springer, 2014.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
45

Sokollik, Thomas. Investigations of Field Dynamics in Laser Plasmas with Proton Imaging. Springer Berlin / Heidelberg, 2013.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
46

Investigations Of Field Dynamics In Laser Plasmas With Proton Imaging. Springer, 2011.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
47

Sokollik, Thomas. Investigations of Field Dynamics in Laser Plasmas with Proton Imaging. Springer, 2011.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
48

Sokollik, Thomas. Investigations of Field Dynamics in Laser Plasmas with Proton Imaging. Springer, 2011.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
49

Sklar, Larry A., ed. Flow Cytometry for Biotechnology. Oxford University Press, 2005. http://dx.doi.org/10.1093/oso/9780195183146.001.0001.

Full text
Abstract:
Flow cytometry is a sensitive and quantitative platform for the measurement of particle fluorescence. In flow cytometry, the particles in a sample flow in single file through a focused laser beam at rates of hundreds to thousands of particles per second. During the time each particle is in the laser beam, on the order of ten microseconds, one or more fluorescent dyes associated with that particle are excited. The fluorescence emitted from each particle is collected through a microscope objective, spectrally filtered, and detected with photomultiplier tubes. Flow cytometry is uniquely capable of the precise and quantitative molecular analysis of genomic sequence information, interactions between purified biomolecules and cellular function. Combined with automated sample handling for increased sample throughput, these features make flow cytometry a versatile platform with applications at many stages of drug discovery. Traditionally, the particles studied are cells, especially blood cells; flow cytometry is used extensively in immunology. This volume shows how flow cytometry is integrated into modern biotechnology, dealing with issues of throughput, content, sensitivity, and high throughput informatics with applications in genomics, proteomics and protein-protein interactions, drug discovery, vaccine development, plant and reproductive biology, pharmacology and toxicology, cell-cell interactions and protein engineering.
APA, Harvard, Vancouver, ISO, and other styles
50

International School of Physics 'Enrico Fermi'. and R. Bonifacio. Coherent and Collective Interactions of Particles and Radiation Beams: Varenna on Lake Como, Villa Monastero, 11-21 July 1995 (International School of ... of the International School of Physics). Ios Pr Inc, 1997.

Find full text
APA, Harvard, Vancouver, ISO, and other styles
We offer discounts on all premium plans for authors whose works are included in thematic literature selections. Contact us to get a unique promo code!

To the bibliography