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020 |a 9781461481294 (alk. paper) 
082 0 4 |a 621.381 52  |b Q4 
245 0 0 |a Quantum dot molecules/  |c ed by Jiang Wu and Zhiming M. Wang. 
260 |a New York:  |b Springer Science+Business Media,  |c 2014. 
300 |a xi, 377 p.  |b illustrations (some color) ; 
490 1 |a Lecture notes in Nanoscale Science and Technology; 14 
504 |a Includes bibliographic references and index. 
505 0 |a Chapter 1: Fabrication of semiconductor Quantum Dot Molecules: droplet epitaxy and local oxidation nanolithography techniques -- Chapter 2: InP Ring-Shaped Quantum Dot Molecules by Droplet Epitaxy -- Chapter 3: Optical properties of lateral InGaAs quantum dot molecules single- and bi-layers -- Chapter 4: Formation Principles and Exciton Relaxation in Semiconductor Quantum Dot - Dye Nanoassemblies -- Chapter 5: Polarization properties of multi-layer InAs quantum dot molecules as a function of their size -- Chapter 6: Analysis of reduced built-in polarization fields and electronic structure of InGaN/GaN quantum dot molecules -- Chapter 7: Interference single electron transistors based on quantum dot molecules -- Chapter 8: Quantum Interference Effects on the Electronic Transmission Through Quantum Dot Molecules -- Chapter 9: Phonon-assisted processes and spontaneous emission in double quantum dots -- Chapter 10: Forster resonant energy transfer signatures in optically driven quantum dot molecules -- Chapter 11: Stark effect and the measurement of electric fields with quantum dot molecules. 
650 0 |a Quantum dots.  |9 4701 
650 0 |a Nanostructured materials.  |9 31401 
700 1 |a Wu, Jiang, Ed.  |9 29404 
700 1 |a Wang, Zhiming M, Ed.  |9 29406 
856 |u https://books.google.co.in/books?id=snbABAAAQBAJ&pg=PR5&dq=Quantum+dot+molecules&hl=en&sa=X&ved=0ahUKEwiUgv6mkaTMAhXJq5QKHaGcA48Q6AEIKjAA#v=onepage&q=Quantum%20dot%20molecules&f=false 
942 |c BK 
999 |c 74323  |d 74323 
952 |0 0  |1 0  |4 0  |6 621_381000000000000_52_Q4  |7 0  |9 66284  |a MGUL  |b MGUL  |c GEN  |d 2015-02-10  |e current books bill no 886 dt. 26/12/2014  |g 10594.19  |l 2  |m 1  |o 621.381 52 Q4  |p 52765  |r 2018-10-25  |s 2018-08-01  |y BK