Title of article :
Thermal crosstalk in arrays of III-N-based Lasers
Author/Authors :
Kuc، نويسنده , , Maciej and Sarza?a، نويسنده , , Robert P. and Nakwaski، نويسنده , , W?odzimierz، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Pages :
8
From page :
1395
To page :
1402
Abstract :
This paper presents a 3D comprehensive thermal-electrical self-consistent model of the continuous-wave (CW) operation of one-dimensional arrays of III-N-based laser diodes at room-temperature (RT). Their performance is mostly limited by thermal processes, in particular by thermal crosstalk between array emitters. Based on data collected from a range of secondary sources, the temperature dependence of the thermal and electrical conductivities of III-N materials used to manufacture nitride-based devices is shown to be a function of the thickness, aluminum mole fractions and Si- and Mg-doping levels of the nitride layers. The impact of substrate width and thickness on increasing the efficiency of heat-flux transport and reducing thermal crosstalk is investigated. As expected, the application of a top-mounted diamond heat spreader was found to have considerable influence on the thermal crosstalk between array emitters, enabling the RT CW operation of laser diode arrays with additional emitters.
Keywords :
thermal conductivity , electrical conductivity , Thermal crosstalk , Diamond heat spreader , III-N materials , Edge-emitting laser diode array
Journal title :
MATERIALS SCIENCE & ENGINEERING: B
Serial Year :
2013
Journal title :
MATERIALS SCIENCE & ENGINEERING: B
Record number :
2150944
Link To Document :
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