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Jerry Tersoff Jerry Tersoff
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Jerry Tersoff is a Research Staff Member at the IBM Thomas J. Watson Research Center. His work spans diverse topics in the theoretical understanding of surfaces, interfaces, electronic materials, epitaxial growth, and nanoscale devices. Throughout his career, his work has emphasized the use of simple models to understand complex behavior. Jerry David Tersoff (* 12. Juni 1945 in Washington, D.C.) ist ein US-amerikanischer Physiker, der sich mit theoretischer Festkörperphysik befasst. Tersoff erhielt 1977 den B.A. in Physik am Swarthmore College und den 1982 den Ph.D. in Physik an der University of California. Er war dann 1982 bis 1984 Postdoc bei den Bell Laboratories, bevor er Research Staff Member am IBM Thomas J. Watson Research Center wurde.
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Jerry Tersoff is a Research Staff Member at the IBM Thomas J. Watson Research Center. His work spans diverse topics in the theoretical understanding of surfaces, interfaces, electronic materials, epitaxial growth, and nanoscale devices. Throughout his career, his work has emphasized the use of simple models to understand complex behavior. Jerry David Tersoff (* 12. Juni 1945 in Washington, D.C.) ist ein US-amerikanischer Physiker, der sich mit theoretischer Festkörperphysik befasst. Tersoff erhielt 1977 den B.A. in Physik am Swarthmore College und den 1982 den Ph.D. in Physik an der University of California. Er war dann 1982 bis 1984 Postdoc bei den Bell Laboratories, bevor er Research Staff Member am IBM Thomas J. Watson Research Center wurde. Tersoffs Forschungsschwerpunkte sind im Gebiet der Moleküldynamik, der Oberflächenphysik und Materialwissenschaften. Er befasste sich mit der Theorie epitaxialen Wachstums und der Rastertunnelmikroskopie, Schottky-Barrieren und Halbleiter-Bandstrukturen bei Heteroübergängen, elektronischer Struktur von Festkörperoberflächen und Grenzflächen. Unter anderem untersuchte er wie mechanische Spannungen bei hetero-epitaxialem Wachstum zum kontrollierten Selbstaubau und zur Selbstorganisation von Nanostrukturen wie Quantenpunkten und Quantendrähten führen können.
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