Silicon CCDs have limited sensitivity to particles and photons with short penetration depth, due to the surface depletion caused by the inherent positive charge in the native oxide. Because of surface depletion, internally-generated electrons are trapped near the irradiated surface and therefore cannot be transported to the detection circuitry. This deleterious surface potential can be eliminated by low-temperature molecular beam epitaxial (MBE) growth of a delta-doped layer on the Si surface. This effect has been demonstrated through achievement of 100% internal quantum efficiency for UV photons detected with delta-doped CCDs. In this paper, we will discuss the modification of the band bending near the CCD surface by low-temperature MBE ...
We report on multilayer high efficiency antireflection coating (ARC) design and development for use ...
We report on multilayer high efficiency antireflection coating (ARC) design and development for use ...
We have developed fully depleted, back-illuminated CCDs thatbuild upon earlier research and developm...
Silicon CCDs have limited sensitivity to particles and photons with short penetration depth, due to ...
Delta-doped CCDs have achieved stable quantum efficiency, at the theoretical limit imposed by reflec...
We report the use of delta-doped charge-coupled devices (CCDs) for direct detection of electrons in ...
We have used molecular beam epitaxy (MBE) based delta-doping technology to demonstrate nearly 100% i...
We have used molecular beam epitaxy (MBE) based delta-doping technology to demonstrate nearly 100% i...
The back surface of a thinned charged-coupled device (CCD) is treated to eliminate the backside pote...
An improved process that includes a high-temperature bonding subprocess has been developed to enable...
We present proof-of-concept results for a novel ultraviolet-sensitive, photon counting, solar blind ...
We report on the development of coatings for a charged-coupled device (CCD) detector optimized for u...
Radiation-induced damage and instabilities in back-illuminated silicon detectors have proved to be c...
Low light level and high-speed image sensors as required for space applications can suffer from a de...
We have developed ultralow-noise electronics in combination with repetitive, nondestructive readout ...
We report on multilayer high efficiency antireflection coating (ARC) design and development for use ...
We report on multilayer high efficiency antireflection coating (ARC) design and development for use ...
We have developed fully depleted, back-illuminated CCDs thatbuild upon earlier research and developm...
Silicon CCDs have limited sensitivity to particles and photons with short penetration depth, due to ...
Delta-doped CCDs have achieved stable quantum efficiency, at the theoretical limit imposed by reflec...
We report the use of delta-doped charge-coupled devices (CCDs) for direct detection of electrons in ...
We have used molecular beam epitaxy (MBE) based delta-doping technology to demonstrate nearly 100% i...
We have used molecular beam epitaxy (MBE) based delta-doping technology to demonstrate nearly 100% i...
The back surface of a thinned charged-coupled device (CCD) is treated to eliminate the backside pote...
An improved process that includes a high-temperature bonding subprocess has been developed to enable...
We present proof-of-concept results for a novel ultraviolet-sensitive, photon counting, solar blind ...
We report on the development of coatings for a charged-coupled device (CCD) detector optimized for u...
Radiation-induced damage and instabilities in back-illuminated silicon detectors have proved to be c...
Low light level and high-speed image sensors as required for space applications can suffer from a de...
We have developed ultralow-noise electronics in combination with repetitive, nondestructive readout ...
We report on multilayer high efficiency antireflection coating (ARC) design and development for use ...
We report on multilayer high efficiency antireflection coating (ARC) design and development for use ...
We have developed fully depleted, back-illuminated CCDs thatbuild upon earlier research and developm...