A novel approach to achieving a polarization-insensitive semiconductor optical amplifier is presented. The active layer consists of graded tensile strained bulk-like structure. which can not only enhance TM mode material gain and further realize polarization-insensitivity, but also get a large 3dB bandwidth due to different strain introduced into the active layer. 3dB bandwidth more than 40nm. 65nm has been obtained in die experiment and theory, respectively. The characteristics of such polarization insensitive structure have been analyzed, The influence of the amount of strain and of the thickness of strain layer on the polarization insensitivity has been discussed
For device application in Datacom and Telecom networks, low polarization sensitive (PS) SOAs with ea...
The possibility of applying a polarization-insensitive quantum-dot (QD) semiconductor optical amplif...
Abstract—Signal-induced birefringence and dichroism in a tensile-strained bulk semiconductor optical...
A polarization-insensitive semiconductor optical amplifier (SOA) with a very thin active tensile-str...
A novel wideband polarization-insensitive semiconductor optical amplifier (SOA) gate containing comp...
Polarization-insensitive semiconductor optical amplifiers (SOA's) with tensile-strained multi-quantu...
A novel semiconductor optical amplifier (SOA) optical gate with a graded strained bulk-like active s...
A semiconductor optical amplifier gate based on tensile-strained quasi-bulk InGaAs is developed. At ...
We present for the first time an in-depth numerical analyses on a strained-barrier InGaAs/InGaAs mul...
The theoretical optimization of tensile strained InGaAsP/InGaAsP MQW for 1.5μm window polarization-i...
International audienceBulk InGaAs layer under slight tensile strain, embedded in InGaAsP barriers an...
International audienceBulk InGaAs layer under slight tensile strain, embedded in InGaAsP barriers an...
The polarization dependent gain (PDG) and its control is a key issue for semiconductor optical ampli...
The polarization dependent gain (PDG) and its control is a key issue for semiconductor optical ampli...
The polarization dependent gain (PDG) and its control is a key issue for semiconductor optical ampli...
For device application in Datacom and Telecom networks, low polarization sensitive (PS) SOAs with ea...
The possibility of applying a polarization-insensitive quantum-dot (QD) semiconductor optical amplif...
Abstract—Signal-induced birefringence and dichroism in a tensile-strained bulk semiconductor optical...
A polarization-insensitive semiconductor optical amplifier (SOA) with a very thin active tensile-str...
A novel wideband polarization-insensitive semiconductor optical amplifier (SOA) gate containing comp...
Polarization-insensitive semiconductor optical amplifiers (SOA's) with tensile-strained multi-quantu...
A novel semiconductor optical amplifier (SOA) optical gate with a graded strained bulk-like active s...
A semiconductor optical amplifier gate based on tensile-strained quasi-bulk InGaAs is developed. At ...
We present for the first time an in-depth numerical analyses on a strained-barrier InGaAs/InGaAs mul...
The theoretical optimization of tensile strained InGaAsP/InGaAsP MQW for 1.5μm window polarization-i...
International audienceBulk InGaAs layer under slight tensile strain, embedded in InGaAsP barriers an...
International audienceBulk InGaAs layer under slight tensile strain, embedded in InGaAsP barriers an...
The polarization dependent gain (PDG) and its control is a key issue for semiconductor optical ampli...
The polarization dependent gain (PDG) and its control is a key issue for semiconductor optical ampli...
The polarization dependent gain (PDG) and its control is a key issue for semiconductor optical ampli...
For device application in Datacom and Telecom networks, low polarization sensitive (PS) SOAs with ea...
The possibility of applying a polarization-insensitive quantum-dot (QD) semiconductor optical amplif...
Abstract—Signal-induced birefringence and dichroism in a tensile-strained bulk semiconductor optical...