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Titlebook: Self-Assembled Quantum Dots; Zhiming M. Wang Book 2008 Springer-Verlag New York 2008 Self Assembled Quantum Dots.nanostructure.optoelectro

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978-1-4419-2552-7Springer-Verlag New York 2008
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Self-Assembled Quantum Dots978-0-387-74191-8Series ISSN 2195-2159 Series E-ISSN 2195-2167
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Zhiming M. WangCovers one of the most promising fields of nanoscale optoelectronics.Is multidisciplinary in scope and international in authorship.Discusses fabrication and characterization toward applications to qua
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cle is located in the farfield of a single time-harmonic line source operating at one given frequency. Scattered pressure fields are observed on two arrays of hydrophones, one on each side of the obstacle. Using a complete family approach, the scattered field is represented as a finite sum of Green’
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E. Uccelli,J. Bauer,M. Bichler,D. Schuh,J. J. Finley,G. Abstreiter,A. Fontcuberta i Morralcle is located in the farfield of a single time-harmonic line source operating at one given frequency. Scattered pressure fields are observed on two arrays of hydrophones, one on each side of the obstacle. Using a complete family approach, the scattered field is represented as a finite sum of Green’
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Udo W. Pohlcle is located in the farfield of a single time-harmonic line source operating at one given frequency. Scattered pressure fields are observed on two arrays of hydrophones, one on each side of the obstacle. Using a complete family approach, the scattered field is represented as a finite sum of Green’
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Yuriy I. Mazur,Georgiy G. Tarasov,Gregory J. Salamocle is located in the farfield of a single time-harmonic line source operating at one given frequency. Scattered pressure fields are observed on two arrays of hydrophones, one on each side of the obstacle. Using a complete family approach, the scattered field is represented as a finite sum of Green’
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