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Quantum dots for lasers, amplifiers and computing. J.~Phys.~D, 38 (13): 2055--2058 (2005)$35 \ GHz$ mode-locking of $1.3$ $m$ quantum dot lasers, , , , , , , , , and 2 other author(s). Appl.~Phys.~Lett., (2004)$10 Gbit/s$ data modulation using $1.3 \ m$ InGaAs quantum dot lasers, , , , , , , and . Electron.~Lett., (2005)Luminescence and Structural Properties of (In,Ga)As/GaAs Quantum Dots, , , , , , , , , and 8 other author(s). Proc. 22nd Int. Conf. Phys. Semicond., (ICPS-22), (Vancouver, Canada, 1994), Singapore, World Scientific, (1995)Atomic structure of stacked InAs quantum dots grown by metal-organic chemical-vapor depostion, , , , , , and . Journal of Vacuum Science and Technology B, (1999)Excited states and energy relaxation in stacked $InAs/GaAs$ quantum dots, , , , , , , and . Phys.~Rev.~B, (1998)Room-temperature continuous-wave lasing from stacked InAs/GaAs quantum dots grown by metalorganic chemical vapor deposition, , , , , , and . Appl.~Phys.~Lett., (1997)Carrier statistics in quantum-dot lasers, , and . Physics of the Solid State, 40 (5): 772 (1998)Many-particle effects in Ge quantum dots investigated by time-resolved capacitance spectroscopy, , , , , , , and . Appl.~Phys.~Lett., (2000)Colliding-pulse modelocked quantum dot lasers, , , , , , , , , and . Electronics Letters, 41 (5): 248--250 (2005)