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Channelplate detector

From the function of a channeltron/channelplate detector it is obvious that high gains are desirable. However, ion feedback and space charge effects limit the gain with increasing charge of the electron avalanche, electron impact ionization with molecules of the residual gas or molecules desorbed under electron bombardment from the channel surface occurs more frequently. The ions produced are then accelerated towards the channel input. If such an ion hits the surface at the channel entrance, it may release an electron which again can start an avalanche of practically the same size, i.e., it causes after-pulses. [Pg.120]

Figure 4.24 Extraction of one-dimensional position information from a channelplate detector by using a discrete multianode with an RC line. For an explanation of the strips and the dashed circular area see the caption of Fig. 4.23. Each strip is connected to the RC line indicated by the resistor and capacitor symbols. The total charge Q of the electron avalanche (shaded area) incident on the multianode flows to both ends of the RC line, giving Qi and Q2 in amounts proportional to the distances (P, L) and (0, P), respectively. The two preamplifiers in which these charges are collected are indicated by triangles. From... Figure 4.24 Extraction of one-dimensional position information from a channelplate detector by using a discrete multianode with an RC line. For an explanation of the strips and the dashed circular area see the caption of Fig. 4.23. Each strip is connected to the RC line indicated by the resistor and capacitor symbols. The total charge Q of the electron avalanche (shaded area) incident on the multianode flows to both ends of the RC line, giving Qi and Q2 in amounts proportional to the distances (P, L) and (0, P), respectively. The two preamplifiers in which these charges are collected are indicated by triangles. From...
The same arguments hold for the detection efficiency of a channelplate detector as for the channeltron, but in addition the ratio ropenarea of the area channel openings to the total plate area has to be included also. As a rough estimate one gets... [Pg.128]

Since the full photoelectron line is detected with the large-scale channelplate detector, each photoelectron contributes to the single counting rate /t which, therefore, becomes independent of the instrumental resolution and is given by... [Pg.253]

In contrast to the simple result of equ. (10.64c), the experimental determination of At[ue is rather cumbersome. A considerable simplification occurs if one of the analysers (e.g., analyser 1 for the photoelectrons) is capable of recording the transmitted electrons with equal transmission and detection efficiencies, independent of their actual kinetic energies Ekinl (large channelplate detector, see Section 5.6). This means that the whole photoline is recorded at once, and the requirement of energy conservation is always fulfilled. In other words, no scanning over the photoline is necessary, only a scanning over the Auger line. Mathematically, this corresponds to... [Pg.398]

FIGURE 2.2 Signal output and design of a dual-channelplate detector with a conical anode. [Pg.23]

Dual-channelplate detectors that have a small, centered hole through which the incoming ion beam can be transmitted are now available commercially, and have... [Pg.57]


See other pages where Channelplate detector is mentioned: [Pg.123]    [Pg.123]    [Pg.124]    [Pg.127]    [Pg.131]    [Pg.181]    [Pg.253]    [Pg.376]    [Pg.123]    [Pg.123]    [Pg.124]    [Pg.127]    [Pg.131]    [Pg.181]    [Pg.253]    [Pg.376]    [Pg.326]    [Pg.1568]    [Pg.25]    [Pg.79]    [Pg.104]    [Pg.154]    [Pg.193]    [Pg.204]    [Pg.224]   
See also in sourсe #XX -- [ Pg.326 , Pg.331 ]




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Channelplate

Electron detector (channeltron/channelplate

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