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Titlebook: Clusters and Nanomaterials; Theory and Experimen Yoshiyuki Kawazoe,Tamotsu Kondow,Kaoru Ohno Book 2002 Springer-Verlag Berlin Heidelberg 20

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1437-0395 d. The authors are all active researchers, collaborating both ex­ perimentally and theoretically in this field, and most of them have regularly participated in the IMR Workshop, held for three years starting fr978-3-642-07522-3978-3-662-04812-2Series ISSN 1437-0395 Series E-ISSN 2197-7275
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https://doi.org/10.1007/978-3-322-88807-5ion spectra of an SnI. single crystal, the exciton absorption band has been observed at peak energies 3.13 eV (1.6 K) and 3.07 eV (room temperature). Cyclodextrin molecules are used as size-controlling vessels to make SnI. clusters. The reflection spectra of SnI. clusters inserted in .-, .- and .-cy
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https://doi.org/10.1007/978-3-662-09833-2ze, the mode gradually acquires a more definite character of a collective excitation, and evolves into a more complete surface excitation. Because of the two-dimensionality common to the SSEG and 2DEG, the size dependence of multipole-mode energies of the SSEG bears obvious similarities to the energ
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Ab Initio Computer Simulations on Microclusters: Structures and Electronic Propertiesy used methods, such as those based upon a localized basis or a plane wave approach. Recent progress in transferable tight-binding parameter schemes is also discussed. Large metal clusters having up to several thousand atoms have been studied using simpler methods, such as the embedded-atom or the e
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