Thomas Ypsilantis
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American physicist
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Physics
Thomas Ypsilantis's Degrees
- PhD Physics Stanford University
Why Is Thomas Ypsilantis Influential?
(Suggest an Edit or Addition)According to Wikipedia, Thomas John Ypsilantis was an American physicist of Greek descent. Ypsilantis was known for the co-discovery of the antiproton in 1955, along with Owen Chamberlain, Emilio Segrè, and Clyde Wiegand. Following this work, he moved to CERN to develop Cherenkov radiation detectors for use in particle physics.
Thomas Ypsilantis's Published Works
Published Works
- The LHCb detector at the LHC (2008) (2611)
- Photo-ionization and Cherenkov ring imaging (1977) (217)
- Reflective UV photocathodes with gas-phase electron extraction: solid, liquid, and adsorbed thin films (1990) (149)
- Theory of ring imaging Cherenkov counters (1994) (123)
- A historical survey of ring imaging Cherenkov counters (1994) (74)
- History of original ideas and basic discoveries in particle physics (1996) (69)
- DETECTION OF FAR-ULTRAVIOLET PHOTONS WITH THE MULTISTEP AVALANCHE CHAMBER. APPLICATION TO CHERENKOV LIGHT IMAGING AND TO SOME PROBLEMS IN HIGH-ENERGY PHYSICS (1979) (58)
- Liquid xenon ionization and scintillation: Studies for a totally active vector electromagnetic calorimeter (1992) (51)
- LHCb RICH : Technical design report (2000) (47)
- Liquid and solid organic photocathodes (1988) (42)
- A two-dimensional, single-photoelectron drift detector for Cherenkov ring imaging (1982) (42)
- A fast-cathode pad-photon detector for Cherenkov ring imaging (1992) (42)
- The LAA project (1990) (39)
- A ring imaging Cherenkov detector, the DELPHI Barrel RICH Prototype Part A: Experimental studies of the detection efficiency and the spatial resolution (1988) (39)
- Imaging Cerenkov detector: Photo-ionization of tri-ethyl-amine (1980) (39)
- Ultraviolet Cherenkov light detector (1975) (38)
- LHCb magnet: Technical design report (1999) (38)
- Liquid xenon scintillation: photon yield and Fano factor measurements (1995) (34)
- Electronic detection of focused Cherenkov rings from aerogel (1997) (34)
- Photosensitive gas detectors for the ring-imaging Cherenkov (RICH) technique and the delphi barrel rich prototype (1986) (33)
- The Cerenkov Ring-Imaging Detector: Recent Progress and Future Development (1981) (33)
- Highly segmented large-area hybrid photodiodes with bialkali photocathodes and enclosed VLSI readout electronics (2000) (30)
- Beam tests of a Fast-RICH prototype with VLSI readout electronics (1994) (30)
- Cerenkov Ring Imaging (1981) (28)
- A ring imaging Cherenkov detector, the DELPHI barrel RICH prototype: Part B: Experimental studies of the detector performance for particle identification (1988) (27)
- pp and pp forward elastic scattering between 4 and 10 GeV/c (1977) (26)
- Measurement of the real part of the forward amplitude in pp elastic scattering (1975) (26)
- Coulomb-nuclear interference in π±p and K±p elastic scattering below 3 GeV: Measurements, real parts and K±p dispersion relations (1976) (26)
- LHCb technical proposal : A Large Hadron Collider Beauty Experiment for Precision Measurements of CP Violation and Rare Decays (1998) (24)
- Development, fabrication and test of a highly segmented hybrid photodiode (2002) (24)
- Identification of solar neutrinos by individual electron counting in HELLAZ (1999) (23)
- Evolution of the RICH technique (1999) (22)
- The AQUA-RICH atmospheric neutrino experiment (1999) (22)
- A rich detector with a sodium fluoride radiator: identification up to 3 GeV/c (1988) (20)
- Real part of the K±p forward scattering amplitude at 4.2, 7 and 10 GeV/c (1976) (20)
- A measurement of the refractive index of sodium fluoride in the far ultraviolet (1991) (16)
- Particle identification for LHC-B: a dedicated collider B experiment at the LHC (1995) (16)
- Measurement of the real part of the forward scattering amplitude in K±p elastic scattering between 0.9 and 2.6 GeV/c (1974) (15)
- The time-projection ring imaging cherenkov (rich) counter - new experimental results (1984) (14)
- Measurement of the Real Part of the Forward Amplitude in K- n and K+ n Elastic Scattering at 10-GeV/c and a New K+- n Dispersion Relation (1978) (13)
- CsI reflective photocathodes and their use for RICH detectors Experimental studies (1996) (13)
- Measurement of the real part of the K−n forward scattering amplitude between 1.2 and 2.6 GeV/c (1976) (12)
- Performance of Si pad sensors for a RICH detector (1996) (12)
- K±n forward dispersion relations and the KNΣ coupling constant (1976) (11)
- Operation of a Fast-RICH Prototype with VLSI readout electronics (1994) (11)
- Testbeam results on particle identification with aerogel used as RICH radiator (2000) (11)
- A fast integrated readout system for a cathode pad photon detector (1993) (10)
- A long base line RICH with a 27 kton water target and radiator for detection of neutrino oscillations (1996) (10)
- Performance of a 256 pad hybrid photon detector for ring imaging (1997) (8)
- HELLAZ : a high rate solar neutrino detector with neutrino energy determination (1993) (8)
- The real part of the forward scattering amplitude in π ± p elastic scattering below 2 GeV/ c (1974) (8)
- A test of the optical theorem (1974) (6)
- A study of a high rate solar neutrino detector with neutrino energy determination (1993) (5)
- An Evaluation of Detectors for a Cerenkov Ring-Imaging Chamber (1980) (5)
- The Pad HPD: A highly segmented hybrid photodiode (2003) (4)
- New detectors : proceedings of the 36th Workshop of the INFN Eloisatron Project, Erice, Italy 1-7 November 1997 (1999) (4)
- Tests of a TPC for Solar Neutrino Detection (HELLAZ-0) (1996) (4)
- Development of large area hybrid photodiodes for the LHCb ring imaging Cherenkov detectors (1998) (3)
- Reply to ‘Comments on “Liquid xenon ionization and scintillation studies for a totally active-vector electromagnetic calorimeter”’ (1995) (3)
- New technologies for supercolliders (1991) (3)
- A background-free detector for cosmic ray showers in the atmosphere (1992) (3)
- Perspectives for new detectors in future supercolliders : proceedings of the 9th workshop of the INFN ELOISATRON Project, Erice, Italy, 17-24 October, 1989 (1991) (3)
- Particle identification for a forward collider B experiment at LHC (1994) (2)
- A Totally Active Liquid Xenon or Krypton Electromagnetic Calorimeter for High Luminosity Hadron Colliders (1991) (2)
- Development of Ring Imaging Cherenkov Counters for Particle Identification (1996) (2)
- Test of aerogel as Cherenkov radiator (2000) (1)
- Frontier Detectors for Frontier Physics. Proceedings, 7th Pisa Meeting on Advanced Detectors (1998) (1)
- L3P : lepton and photon precision physics (1992) (1)
- AcoplanarDi-leptons andMixed events on the basis of two supergravity model predictions (1993) (1)
- A large area RICH for long baseline neutrinos (1994) (1)
- The Pad HPD as photodetector of the LHCb RICH detectors (2001) (1)
- A PRECISION EXPERIMENT ON ELECTRONS, PHOTONS AND MUONS AT LHC (1993) (1)
- Performance of a radiation hard 128 channel analogue front-end chip for the readout of a silicon-based hybrid photon detector (2003) (0)
- The k-n elastic differential cross section between 1.2 and 2.2 GeV/c (1976) (0)
- TESTS OF THE RING IMAGING CHERENKOV DRIFT DETECTOR. (1981) (0)
- NEW EXPERIMENTAL TECHNICS (1982) (0)
- Performance of a radiation hard 128 channel analogue front-end chip for the readout of a Si-based hybrid photon detector (1999) (0)
- First beam tests of a Fast-RICH prototype with VLSI readout electronics (1995) (0)
- K$^{-}$ n and K$^{-}$ p elastic scattering in K$^{-}$ d collisions from 1.2 to 2.2 GeV/c (1977) (0)
- NEW RESULTS ON CHERENKOV RING IMAGING OBTAINED WITH A TPC TYPE PHOTON DETECTOR USING TMAE AND A FUSED QUARTZ WINDOW (1981) (0)
- Measurement of the real part of the forward scattering amplitude by means of the Coulomb-nuclear interference in $\pi^{\pm}$ p and K$^{\pm}$ p elastic scattering at incident momenta below 3 GeV/c (1975) (0)
- A CRYOGENIC APPARATUS WI1H ON-LINE PURIFICATION SYS1EM FOR (1992) (0)
- A Cryogenic Apparatus with On-Line Purification System for Scintillation and Ionization Studies in Noble Liquids (1992) (0)
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