Microgap ultra-violet detector
Patent
·
OSTI ID:869509
- Danville, CA
- Livermore, CA
A microgap ultra-violet detector of photons with wavelengths less than 400 run (4000 Angstroms) which comprises an anode and a cathode separated by a gas-filled gap and having an electric field placed across the gap. Either the anode or the cathode is semi-transparent to UV light. Upon a UV photon striking the cathode an electron is expelled and accelerated across the gap by the electric field causing interactions with other electrons to create an electron avalanche which contacts the anode. The electron avalanche is detected and converted to an output pulse.
- Research Organization:
- Lawrence Livermore National Laboratory (LLNL), Livermore, CA
- DOE Contract Number:
- W-7405-ENG-48
- Assignee:
- United States of America as represented by United States (Washington, DC)
- Patent Number(s):
- US 5349194
- OSTI ID:
- 869509
- Country of Publication:
- United States
- Language:
- English
A two-dimensional parallel-plate chamber for high-rate soft X-ray detection
|
journal | July 1986 |
Similar Records
Microgap ultra-violet detector
Microgap flat panel display
Microgap flat panel display
Patent
·
Tue Sep 20 00:00:00 EDT 1994
·
OSTI ID:6980724
Microgap flat panel display
Patent
·
Wed Dec 31 23:00:00 EST 1997
·
OSTI ID:872034
Microgap flat panel display
Patent
·
Mon Dec 07 23:00:00 EST 1998
·
OSTI ID:321212
Related Subjects
/250/
400
4000
accelerated
angstroms
anode
avalanche
cathode
cathode separated
causing
comprises
contacts
converted
create
detected
detector
electric
electric field
electron
electron avalanche
electrons
expelled
field
gap
gas-filled
gas-filled gap
interactions
light
microgap
microgap ultra-violet
output
output pulse
photon
photons
placed
pulse
run
semi-transparent
separated
striking
ultra-violet
ultra-violet detector
wavelengths
400
4000
accelerated
angstroms
anode
avalanche
cathode
cathode separated
causing
comprises
contacts
converted
create
detected
detector
electric
electric field
electron
electron avalanche
electrons
expelled
field
gap
gas-filled
gas-filled gap
interactions
light
microgap
microgap ultra-violet
output
output pulse
photon
photons
placed
pulse
run
semi-transparent
separated
striking
ultra-violet
ultra-violet detector
wavelengths