Semiconductor lasers are convenient and compact sources of light, offering highly efficient operation, direct electrical control and integration opportunities. In this review we describe how semiconductor quantum-dot structures can provide an efficient means of amplifying and generating ultrafast (of the order of 100 fs), high-power and low-noise optical pulses, with the potential to boost the repetition rate of the pulses to beyond 1 THz. Such device designs are opening up new possibilities in ultrafast science and technology
Abstract. This thesis is focused on the experimental and theoretical study of novel quantum dot pass...
In this thesis, novel regimes of mode locking in quantum dot semiconductor laser diodes have been in...
This dissertation explores various aspects and potential of optical pulse generation based on active...
Semiconductor lasers are convenient and compact sources of light, offering highly efficient operatio...
Solid-state lasers that can generate optical pulses in the picosecond and femtosecond domains have p...
The development of femtosecond lasers has continued rapidly over the past decade from laboratory sys...
Novel materials, notably quantum-dot (QD) semiconductor structures offer the unique possibility of c...
Quantum-dot lasers have shown remarkable properties, such as temperature-insensitive operation, low ...
In this review we describe how quantum-dot structures have opened up new avenues in ultrafast scienc...
In this paper we review the recent progress on the development of novel quantum-dot structures and l...
Semiconductor quantum-dots have been recently showing great promise for the generation of ultrashort...
Semiconductor quantum dots offer major advantages in ultrafast science and technology, due to the p...
This paper presents the current status of our research in mode-locked quantum-dot edge-emitting lase...
This paper presents the current status of our research in mode-locked quantum-dot edge-emitting lase...
In this review, the potential of mode-locked lasers based on advanced quantum-dot ( QD) active media...
Abstract. This thesis is focused on the experimental and theoretical study of novel quantum dot pass...
In this thesis, novel regimes of mode locking in quantum dot semiconductor laser diodes have been in...
This dissertation explores various aspects and potential of optical pulse generation based on active...
Semiconductor lasers are convenient and compact sources of light, offering highly efficient operatio...
Solid-state lasers that can generate optical pulses in the picosecond and femtosecond domains have p...
The development of femtosecond lasers has continued rapidly over the past decade from laboratory sys...
Novel materials, notably quantum-dot (QD) semiconductor structures offer the unique possibility of c...
Quantum-dot lasers have shown remarkable properties, such as temperature-insensitive operation, low ...
In this review we describe how quantum-dot structures have opened up new avenues in ultrafast scienc...
In this paper we review the recent progress on the development of novel quantum-dot structures and l...
Semiconductor quantum-dots have been recently showing great promise for the generation of ultrashort...
Semiconductor quantum dots offer major advantages in ultrafast science and technology, due to the p...
This paper presents the current status of our research in mode-locked quantum-dot edge-emitting lase...
This paper presents the current status of our research in mode-locked quantum-dot edge-emitting lase...
In this review, the potential of mode-locked lasers based on advanced quantum-dot ( QD) active media...
Abstract. This thesis is focused on the experimental and theoretical study of novel quantum dot pass...
In this thesis, novel regimes of mode locking in quantum dot semiconductor laser diodes have been in...
This dissertation explores various aspects and potential of optical pulse generation based on active...