DocumentCode
1030587
Title
Noise in various electron multiplication methods used in imaging devices
Author
Timm, Gerald W. ; Van Der Ziel, Aldert
Author_Institution
University of Minnesota, Minneapolis, Minn.
Volume
15
Issue
5
fYear
1968
fDate
5/1/1968 12:00:00 AM
Firstpage
314
Lastpage
320
Abstract
Noise data are presented for various electron multiplication methods used in imaging devices. It is shown that the noise of these devices can always be represented in the same manner and that it can be described by a noise deterioration factor Γ, which is the ratio of the output noise over the multiplied input noise. In the transmission secondary electron multiplier, Γ decreases with increasing primary energy and with increasing Collector voltage in such a manner that Γ is a universal function of the current multiplication factor δ part of this may be due to electron losses in the aluminum backing, but the secondary emission multiplication also contributes. In the image intensifier multiplier, Γ decreases with increasing primary energy and shows comparable behavior to the first multiplication method. The gain here is frequency dependent because of the response of the phosphor. In the channel multiplier, the dc gain
decreases with increasing Ip , so that the device is nonlinear. One must then distinguish between "apparent\´, noise deterioration factor Γ\´ and the true deterioration factor Γ. It is found that Γ\´ < Γ, explaining the remarkably low value of Γ\´(≃1.4) found in these devices.
decreases with increasing IKeywords
Aluminum; Density estimation robust algorithm; Electron emission; Electron multipliers; Frequency dependence; Image intensifiers; Phosphors; Signal detection; Signal to noise ratio; Voltage;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/T-ED.1968.16183
Filename
1475085
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