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Titlebook: Laser Spectroscopy VII; Proceedings of the S Theo W. Hänsch,Yuen Ron Shen Conference proceedings 1985 Springer-Verlag Berlin Heidelberg 198

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f W. Herschel and J. von Fraunhofer, that the star = Sun identification was shown to be correct: the absorption lines of several nearby stars were observed, revealing their kinship with the lines observed in the solar spectrum. This Chapter addesses the construction of stellar models and the importa
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H. G. Dehmelt,G. Gabrielse,K. Helmerson,G. Janik,W. G. Nagourney,P. B. Schwinberg,R. S. Van Dyck Jr.mas–Reiche–Kuhn sum rules for the case of a nonlocal field. We carry out asymptotic analysis also for the relativistic case. We present the method of inclusion of screening corrections for the relativistic case near the threshold and far away from it. We demonstrate that inclusion of correlations be
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J. C. Bergquist,D. J. Wineland,W. M. Itano,H. Hemmati,H.-U. Danielt,G. Leuchsmploying the results obtained in Chap. ., we clarify the mechanism and calculate the cross section for the nonresonant photoexcitation of nucleus. We also present analysis of some less-explored influences of the electron shell on the probability of . decay.
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S. Chu,L. Hollberg,J. E. Bjorkholm,A. Cable,A. Ashkin a benzene moiety in its chemical structure, so its crystallization and polymorphism phenomena are governed by multiphoton absorption under femtosecond laser irradiation and essentially differ from those of L-Ser. Herein, the mechanism of polymorph control is uniformly discussed in terms of classica
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S. Chu,A. Ashkin,J. E. Bjorkholm,J. P. Gordon,L. Hollbergor next generation’s solar cell. Last nanoparticle is organic material, naphthalocyanine. Because naphthalocyanine absorbs IR light, it is also very attractive for next generation’s bioimaging. These various nanoparticles easily prepared by laser ablation in liquid are promising material for biomedi
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H. G. C. Werij,J. E. M. Haverkort,W. A. Hamel,R. W. M. Hoogeveen,J. P. Woerdmannobubbles) play a significant role in inducing rapid temperature increase. This chapter discusses how thermally induced nanobubbles enhance the rapid temperature increase as well as the maximum attained temperature. A novel technique for monitoring the formation of thermally induced nanobubbles and
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