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Results: 5

Authors: POGORELSKY I BENZVI I KIMURA WD KURNIT NA KANNARI F
Citation: I. Pogorelsky et al., PICOSECOND CO2-LASER FOR RELATIVISTIC PARTICLE-ACCELERATION, Infrared physics & technology, 36(1), 1995, pp. 341-354

Authors: CLAYTON CE KURNIT NA MEYERHOFER DD
Citation: Ce. Clayton et al., APPLICATION OF CONVENTIONAL LASER TECHNOLOGY TO GAMMA-GAMMA COLLIDERS, Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment, 355(1), 1995, pp. 121-129

Authors: POGORELSKY IV FISCHER J KUSCHE KP BABZIEN M KURNIT NA BIGIO IJ HARRISON RF SHIMADA T
Citation: Iv. Pogorelsky et al., SUBNANOSECOND MULTI-GIGAWATT CO2-LASER, IEEE journal of quantum electronics, 31(3), 1995, pp. 556-566

Authors: HARRIS DB ALLEN GR BERGGREN RR CARTWRIGHT DC CZUCHLEWSKI SJ FIGUEIRA JF HANSON DE HAUER A JONES JE KURNIT NA LELAND WT MACK JM MCDONALD TE MCLEOD J ROSE EA SOREM M SULLIVAN JA WATT RG
Citation: Db. Harris et al., STRENGTHS AND WEAKNESSES OF KRF LASERS FOR INERTIAL CONFINEMENT FUSION APPLICATIONS LEARNED FROM THE AURORA LASER, Laser and particle beams, 11(2), 1993, pp. 323-330

Authors: SULLIVAN JA ALLEN GR BERGGREN RR CZUCHLEWSKI SJ HARRIS DB JONES ME KROHN BJ KURNIT NA LELAND WT MANSFIELD C MCLEOD J MCCOWN AW PENDERGRASS JH ROSE EA ROSOCHA LA THOMAS VA
Citation: Ja. Sullivan et al., KRF AMPLIFIER DESIGN ISSUES AND APPLICATION TO INERTIAL CONFINEMENT FUSION SYSTEM-DESIGN, Laser and particle beams, 11(2), 1993, pp. 359-383
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