Type-II superlattices (T2SLs) are considered the III/V alternative to HgCdTe for infrared (IR) detectors and have already reached market maturity. Fraunhofer IAF has demonstrated mono- and bi-spectral T2SL focal plane arrays up to 640×512 pixels for mid- and long-wavelength IR. In order to develop an industry-compatible T2SL technology, we have established the complete chain for detector array fabrication including design and modelling, epitaxial growth, as well as front- and backside processing. The epitaxial growth of T2SLs is performed by molecular beam epitaxy (MBE) in multi-wafer reactors. In this paper, we report on the control of growth rates during epitaxy, uniformity and reproducibility of the growth process, as well as characteriz...
Numerous applications within the mid- and long-wavelength infrared are driving the search for effici...
The InAs/GaSb Type-II strained layer superlattice (SLS) is promising III-V material system for infra...
In this thesis a thorough literature review is taken of infrared type-II superlattice (T2SL) detecto...
For more than two decades, Antimony-based type-II superlattice photodetectors for the infrared spect...
In the past years, the development of the type-II InAs/GaSb superlattice technology at the Fraunhofe...
The vast array of applications for the detection of mid- to long-wave infrared radiation has spurred...
The paper reports on the status of type-II superlattice diodes grown and fabricated for infrared abs...
The antimonide superlattice infrared detector technology program was established to explore new infr...
Fraunhofer IAF can look back on many years of expertise in developing high-performance infrared phot...
InAs/GaSb type-II short-period superlattice (SL) photodiodes have been shown to be very promising fo...
The project’s objective is the development of an InAs/GaSb type II superlattice (T2SL) medium wavele...
Photodetectors in the non-visible region of the electromagnetic spectrum are essential for security,...
IEEEWe report the high performance of Mid-wave Infrared Region (MWIR) InAs/GaSb Type-II Superlattice...
We present the InAs/GaSb type-II superlattice dual-color technology developed at Fraunhofer IAF. Thi...
InAs/GaSb short-period superlattices (SL) have proven their large potential for high performance foc...
Numerous applications within the mid- and long-wavelength infrared are driving the search for effici...
The InAs/GaSb Type-II strained layer superlattice (SLS) is promising III-V material system for infra...
In this thesis a thorough literature review is taken of infrared type-II superlattice (T2SL) detecto...
For more than two decades, Antimony-based type-II superlattice photodetectors for the infrared spect...
In the past years, the development of the type-II InAs/GaSb superlattice technology at the Fraunhofe...
The vast array of applications for the detection of mid- to long-wave infrared radiation has spurred...
The paper reports on the status of type-II superlattice diodes grown and fabricated for infrared abs...
The antimonide superlattice infrared detector technology program was established to explore new infr...
Fraunhofer IAF can look back on many years of expertise in developing high-performance infrared phot...
InAs/GaSb type-II short-period superlattice (SL) photodiodes have been shown to be very promising fo...
The project’s objective is the development of an InAs/GaSb type II superlattice (T2SL) medium wavele...
Photodetectors in the non-visible region of the electromagnetic spectrum are essential for security,...
IEEEWe report the high performance of Mid-wave Infrared Region (MWIR) InAs/GaSb Type-II Superlattice...
We present the InAs/GaSb type-II superlattice dual-color technology developed at Fraunhofer IAF. Thi...
InAs/GaSb short-period superlattices (SL) have proven their large potential for high performance foc...
Numerous applications within the mid- and long-wavelength infrared are driving the search for effici...
The InAs/GaSb Type-II strained layer superlattice (SLS) is promising III-V material system for infra...
In this thesis a thorough literature review is taken of infrared type-II superlattice (T2SL) detecto...