In this work we demonstrate theoretically and experimentally the capability to reduce the readout noise of an optical and X-ray photon detector based on the semiconductor DEPFET device below a level of only 0.3e- ENC (equivalent noise charge). The readout method used is called "Repetitive Non Destructive Readout" (RNDR) and was realized by placing two single DEPFET-devices next to each other and by coupling their charge storing region by an additional gate. By transferring the stored charge from one DEPFET to the other and vice versa the same charge can be measured non-destructively and arbitrarily often. Taking the average value of a large number n of these measurements, the noise is reduced by 1/√n. The main advantage of such a detector i...
To improve the signal to noise level, devices for optical and x-ray astronomy use techniques to supp...
We have developed ultralow-noise electronics in combination with repetitive, nondestructive readout ...
Standard linear optical detectors have a maximum sensitivity in the few hundreds of photons range, l...
In this work we demonstrate theoretically and experimentally the capability to reduce the readout no...
In this work we demonstrate theoretically and experimentally the capability to reduce the readout no...
In this work we demonstrate theoretically and experimentally the capability to reduce the readout no...
We present a new CCD Detector system for single optical photon and low light sources imaging. PnCCDs...
We demonstrate the use of a silicon detector based on a DEPFET device, with sub-electron readout noi...
Depleted field effect transistors (DEPFET) are used to achieve very low noise signal charge readout ...
Depleted field effect transistors (DEPFET) are used to achieve very low noise signal charge readout ...
DEPFET is a natural building block for pixel sensors as it comprises the properties of detector, amp...
We have developed ultralow-noise electronics in combination with repetitive, nondestructive readout ...
Low-noise single-photon detection is a prerequisite for quantum information processing using photoni...
The DEPFET detector-amplifier structure invented 1985 by J. Kemmer and G. Lutz possesses several uni...
In this letter, the development and the experimental characterization of a new photon detection modu...
To improve the signal to noise level, devices for optical and x-ray astronomy use techniques to supp...
We have developed ultralow-noise electronics in combination with repetitive, nondestructive readout ...
Standard linear optical detectors have a maximum sensitivity in the few hundreds of photons range, l...
In this work we demonstrate theoretically and experimentally the capability to reduce the readout no...
In this work we demonstrate theoretically and experimentally the capability to reduce the readout no...
In this work we demonstrate theoretically and experimentally the capability to reduce the readout no...
We present a new CCD Detector system for single optical photon and low light sources imaging. PnCCDs...
We demonstrate the use of a silicon detector based on a DEPFET device, with sub-electron readout noi...
Depleted field effect transistors (DEPFET) are used to achieve very low noise signal charge readout ...
Depleted field effect transistors (DEPFET) are used to achieve very low noise signal charge readout ...
DEPFET is a natural building block for pixel sensors as it comprises the properties of detector, amp...
We have developed ultralow-noise electronics in combination with repetitive, nondestructive readout ...
Low-noise single-photon detection is a prerequisite for quantum information processing using photoni...
The DEPFET detector-amplifier structure invented 1985 by J. Kemmer and G. Lutz possesses several uni...
In this letter, the development and the experimental characterization of a new photon detection modu...
To improve the signal to noise level, devices for optical and x-ray astronomy use techniques to supp...
We have developed ultralow-noise electronics in combination with repetitive, nondestructive readout ...
Standard linear optical detectors have a maximum sensitivity in the few hundreds of photons range, l...