In this work we demonstrate that ultra-thin (5 and 15 nm) MgO transmission dynodes with sufficient high transmission electron yield (TEY) can be constructed. These transmission dynodes act as electron amplification stages in a novel vacuum electron multiplier: the Timed Photon Counter. The ultra-thin membranes with a diameter of 30 μm are arranged in a square 64-by-64-array. The TEY was determined with a scanning electron microscope using primary electrons with primary energies of 0.75-5 keV. The method allows a TEY map of the surface to be made while simultaneously imaging the surface. The TEY of individual membranes can be extracted from the TEY map. An averaged maximum TEY of 4.6±0.2 was achieved by using 1.35 keV primary electrons on a ...
By placing, in vacuum, a stack of transmission dynodes (tynodes) on top of a CMOS pixel chip, a sing...
We measure the transmission secondary electron yield of nanometer-thick Al2O3/TiN/Al2O3 films using ...
Thin substrates are one of the possible choices to provide radiation hard detectors for future high-...
In this work we demonstrate that ultra-thin (5 and 15 nm) MgO transmission dynodes with sufficient h...
Large-area transmission dynodes were fabricated by depositing an ultra-thin continuous film on a sil...
The (secondary) electron emission from multilayered Al2O3/TiN membranes has been investigated with a...
For decades, photomultiplier tubes (PMTs) have been the most common choice in single photon detectio...
In this paper we demonstrate the fabrication of large arrays of ultrathin freestanding membranes (ty...
This study reports on the secondary electron emission (SEE) performance of atomic layer deposited Mg...
\u3cp\u3eSecondary electron emission materials are reviewed with the aim of providing guidelines for...
Secondary electron emission materials are reviewed with the aim of providing guidelines for the futu...
\u3cp\u3eBy placing, in vacuum, a stack of transmission dynodes (tynodes) on top of a CMOS pixel chi...
Secondary electron emission materials are reviewed with the aim of providing guidelines for the futu...
International audienceIn this article we study the potential of the MCP-PMT read-out to detect singl...
By placing, in vacuum, a stack of transmission dynodes (tynodes) on top of a CMOS pixel chip, a sing...
We measure the transmission secondary electron yield of nanometer-thick Al2O3/TiN/Al2O3 films using ...
Thin substrates are one of the possible choices to provide radiation hard detectors for future high-...
In this work we demonstrate that ultra-thin (5 and 15 nm) MgO transmission dynodes with sufficient h...
Large-area transmission dynodes were fabricated by depositing an ultra-thin continuous film on a sil...
The (secondary) electron emission from multilayered Al2O3/TiN membranes has been investigated with a...
For decades, photomultiplier tubes (PMTs) have been the most common choice in single photon detectio...
In this paper we demonstrate the fabrication of large arrays of ultrathin freestanding membranes (ty...
This study reports on the secondary electron emission (SEE) performance of atomic layer deposited Mg...
\u3cp\u3eSecondary electron emission materials are reviewed with the aim of providing guidelines for...
Secondary electron emission materials are reviewed with the aim of providing guidelines for the futu...
\u3cp\u3eBy placing, in vacuum, a stack of transmission dynodes (tynodes) on top of a CMOS pixel chi...
Secondary electron emission materials are reviewed with the aim of providing guidelines for the futu...
International audienceIn this article we study the potential of the MCP-PMT read-out to detect singl...
By placing, in vacuum, a stack of transmission dynodes (tynodes) on top of a CMOS pixel chip, a sing...
We measure the transmission secondary electron yield of nanometer-thick Al2O3/TiN/Al2O3 films using ...
Thin substrates are one of the possible choices to provide radiation hard detectors for future high-...