Dye Lasers: 25 YearsMichael Stuke Springer Berlin Heidelberg, 1992 - 247 sidor In Dye Lasers: 25 years, the pioneers and leading experts in the field of dye lasers present the current status and bright future perspectives of dye lasers and their applications in physics and chemistry. Particular topics covered include: new sources of ultrashort pulses, novel aspects of resonator design and imaging for femtosecond lasers, amplification schemes to terawatt intensity regimes, optics and high-resolution spectroscopy of atoms and molecules, and electro-optic and plasma physics applications of ultrashort and ultra-intense laser pulses. Since its invention in 1966, the dye laser has revolutionized many fields of science and technology. Questions of fundamental interest in physics and chemistry can now be answered: it is possible to test fundamental quantum physics in single-atom experiments and regioselective photochemistry in complexes can be monitored directlyusing dye-laser diagnostic methods. In this book the latest results (and most recent references) are presented for new sources of ultrashort pulses from the visible to the VUV, together with experimental details of ultrahigh-resolution spectroscopy of atoms and molecules, laser diagnostics of the dynamics of elementary chemical reactions, and ultrahigh intensity sources for laser target interaction. |
Innehåll
Femtosecond Broadband Absorption Spectroscopy | 1 |
Dye Lasers and Laser Dyes in Physical Chemistry | 19 |
SingleAtom Experiments and the Test | 37 |
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absorption spectra Appl atomic beam atomic mirror bandwidth broadening calculated cavity Chem CO2-HBr collision complexes configuration curve distribution Doppler broadening dye cell dye laser excimer laser excited experimental experiments F.P. Schäfer femtosecond fluorescence frequency gain gain medium helium IEEE infrared dye input pulse intensity interaction ionization ions laser beam laser dye laser pulses laser radiation laser system lasers pumped lens Lett light pulses maser measured mirror mode mode-locked molecular molecules nonlinear nonlinear optical observed one-atom maser optical output energy phase photoconductive photolysis photon photon number Phys picosecond plasma potential probe pulse pulse duration pulse front pump pulse pump-probe Quantum Electron reflected resonator rotational Rydberg atoms S₁ saturation second harmonic shift shown in Fig signal spatial spectral spectroscopy spectrum stability statistics stimulated emission structure superfluid Szatmári techniques temperature time-resolved transition tunable ultrashort V.S. Letokhov velocity wave wavelength XeF(C
