The development of direct electron detectors has played a key role in low-dose electron microscopy imaging applications. Monolithic active-pixel sensor detectors are currently widely applied for cryogenic electron microscopy (cryo-EM); however, they have best performance at 300 kV, have relatively low read-out speed and only work in imaging mode. Hybrid pixel detectors can operate at any energy, have a higher detective quantum efficiency (DQE) at lower voltage, have unprecedented high time resolution, and can operate in both imaging and diffraction modes. This could make them well-suited for novel low-dose life-science applications, such as cryo-ptychography, iDPC, and liquid cell imaging. Timepix3 is not frame-based, but truly event-based,...
Timepix chip detectors, being quantum area pixel electron detectors, provide greater incident partic...
The electron imaging performance of Medipix2 is described. Medipix2 is a hybrid pixel detector compo...
Imaging of biomolecules by ionizing radiation, such as electrons, causes radiation damage which intr...
The development of direct electron detectors has played a key role in low-dose electron microscopy i...
Abstract The development of direct electron detectors has played a key role in low-dose electron mi...
Modern direct electron detectors (DEDs) provided a giant leap in the use of cryogenic electron micro...
Abstract Modern direct electron detectors (DEDs) provided a giant leap in the use of cryogenic elec...
Detector developments are currently enabling new capabilities in the field of transmission electron ...
Abstract: Hybrid pixel direct electron detectors are gaining popularity in electron microscopy due t...
In this paper we report quantitative measurements of the imaging performance for the current generat...
In our article we report first quantitative measurements of imaging performance for the current gene...
We present the first measurements with the energy sensitive Timepix pixel detector for electron imag...
The introduction of direct electron detectors enabled the structural biology revolution of cryogenic...
We demonstrate how the latest generation of hybrid pixel detectors of the Timepix family can be used...
Timepix chip detectors, being quantum area pixel electron detectors, provide greater incident partic...
The electron imaging performance of Medipix2 is described. Medipix2 is a hybrid pixel detector compo...
Imaging of biomolecules by ionizing radiation, such as electrons, causes radiation damage which intr...
The development of direct electron detectors has played a key role in low-dose electron microscopy i...
Abstract The development of direct electron detectors has played a key role in low-dose electron mi...
Modern direct electron detectors (DEDs) provided a giant leap in the use of cryogenic electron micro...
Abstract Modern direct electron detectors (DEDs) provided a giant leap in the use of cryogenic elec...
Detector developments are currently enabling new capabilities in the field of transmission electron ...
Abstract: Hybrid pixel direct electron detectors are gaining popularity in electron microscopy due t...
In this paper we report quantitative measurements of the imaging performance for the current generat...
In our article we report first quantitative measurements of imaging performance for the current gene...
We present the first measurements with the energy sensitive Timepix pixel detector for electron imag...
The introduction of direct electron detectors enabled the structural biology revolution of cryogenic...
We demonstrate how the latest generation of hybrid pixel detectors of the Timepix family can be used...
Timepix chip detectors, being quantum area pixel electron detectors, provide greater incident partic...
The electron imaging performance of Medipix2 is described. Medipix2 is a hybrid pixel detector compo...
Imaging of biomolecules by ionizing radiation, such as electrons, causes radiation damage which intr...