摘要:
The present invention provides a method and apparatus for processing signals of a semiconductor detector, including: acquiring a relationship of a time difference between anode and cathode signals of the semiconductor detector with an anode signal amplitude; obtaining an optimal data screening interval according to the relationship of the time difference between anode and cathode signals of the semiconductor detector with the anode signal amplitude, wherein the optimal data screening interval is an interval where the time difference between the anode and cathode signals is greater than 50 ns; and screening and processing the collected data according to the optimal data screening interval when the semiconductor detector collects data. The present invention better overcomes the inherent crystal defects of the detector, reduces the effect of background noise, increases the energy resolution of the cadmium zinc telluride detector under room temperature, and improves the peak-to-compton ratio.
摘要:
The invention provides a semiconductor detector (100), and the semiconductor detector (100) comprises a semiconductor crystal (101), a cathode (102), an anode (103) and at least one ladder electrode (104); the semiconductor crystal (101) comprises a top surface (101-2), a bottom surface (101-1) and at least one side (101-3); the cathode (102), the anode (103) and the ladder electrode (104) are conductive thin films deposited on a surface of the semiconductor crystal (101); the cathode (102) is disposed on the bottom surface (101-1) of the semiconductor crystal (101), the anode (103) is disposed on the top surface (101-2) of the semiconductor crystal (101), the ladder electrode (104) is disposed on the at least one side (101-3) of the semiconductor crystal (101); and the ladder electrode (104) comprises a plurality of sub-electrodes. As compared to the prior art, the semiconductor detector can improve the energy resolution.
摘要:
The present disclosure provides a radiation detector, comprising: a semiconductor crystal (101) for detecting radiation, the semiconductor crystal comprising a top surface, a bottom surface, and at least one side surface; at least one anode (103) arranged on at least one of the top surface, the bottom surface, and the at least one side surface; and at least one cathode (102) arranged on at least another one of the top surface, the bottom surface, and the at least one side surface, wherein the at least one anode each has a stripe shape, the at least one cathode each has a planar or curved shape, and the at least one cathode and the at least one anode extend in parallel with respect to each other to a length substantially equal to that of the anode. Such an electrode structure can improve energy resolution and detection efficiency of the radiation detector effectively.
摘要:
The present invention provides a method and apparatus for processing signals of a semiconductor detector, including: acquiring a relationship of a time difference between anode and cathode signals of the semiconductor detector with an anode signal amplitude; obtaining an optimal data screening interval according to the relationship of the time difference between anode and cathode signals of the semiconductor detector with the anode signal amplitude, wherein the optimal data screening interval is an interval where the time difference between the anode and cathode signals is greater than 50 ns; and screening and processing the collected data according to the optimal data screening interval when the semiconductor detector collects data. The present invention better overcomes the inherent crystal defects of the detector, reduces the effect of background noise, increases the energy resolution of the cadmium zinc telluride detector under room temperature, and improves the peak-to-compton ratio.
摘要:
The present disclosure provides a radiation detector, comprising: a semiconductor crystal (101) for detecting radiation, the semiconductor crystal comprising a top surface, a bottom surface, and at least one side surface; at least one anode (103) arranged on at least one of the top surface, the bottom surface, and the at least one side surface; and at least one cathode (102) arranged on at least another one of the top surface, the bottom surface, and the at least one side surface, wherein the at least one anode each has a stripe shape, the at least one cathode each has a planar or curved shape, and the at least one cathode and the at least one anode extend in parallel with respect to each other to a length substantially equal to that of the anode. Such an electrode structure can improve energy resolution and detection efficiency of the radiation detector effectively.