Search Results - "Solem, J. C."

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    Observation of relativistic and charge-displacement self-channeling of intense subpicosecond ultraviolet (248 nm) radiation in plasmas by BORISOV, A. B, BOROVSKIY, A. V, RHODES, C. K, KOROBKIN, V. V, PROKHOROV, A. M, SHIRYAEV, O. B, SHI, X. M, LUK, T. S, MCPHERSON, A, SOLEM, J. C, BOYER, K

    Published in Physical review letters (13-04-1992)
    “…Experimental studies examining a new relativistic regime of high-intensity short-pulse propagation in plasmas have been performed which present evidence for…”
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    Nonlinear behavior of some hydrostatically stressed isotropic elastomeric foams by DIENES, J. K, SOLEM, J. C

    Published in Acta mechanica (01-01-1999)
    “…We calculate the stress-strain relation for elastomeric foam from an ab initio theory, which shows that the "plateau" and "densification" regions should be…”
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    Biomedical three-dimensional holographic microimaging at visible, ultraviolet and X-ray wavelengths by Boyer, K, Solem, J.C, Longworth, J.W, Borisov, A.B, Rhodes, C.K

    Published in Nature medicine (01-08-1996)
    “…A new imaging technology is under advanced development that has several key advantages over conventional forms of microimaging performed with standard light…”
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    Prospects for X-ray amplification with charge-displacement self-channeling by Solem, J.C., Luk, T.S., Boyer, K., Rhodes, C.K.

    Published in IEEE journal of quantum electronics (01-12-1989)
    “…The authors develop an analytic theory of charge-displacement self-channeling, a mechanism that can dynamically trap a short intense pulse of light. Attention…”
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    Understanding geometrical phases in quantum mechanics: an elementary example by SOLEM, J. C, BIEDENHARN, L. C

    Published in Foundations of physics (01-02-1993)
    “…We discuss an exact solution to the simplest nontrivial example of a geometrical phase in quantum mechanics. By means of this example: (1) we elucidate the…”
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    High intensity generation of 9-13 Å x rays from BaF2 targets by ZIGLER, A, BURKHALTER, P. G, NAGEL, D. J, BOYER, K, LUK, T. S, MCPHERSON, A, SOLEM, J. C, RHODES, C. K

    Published in Applied physics letters (12-08-1991)
    “…Studies of the interaction of condensed matter with short pulse (∼ 600 fs) high intensity (∼1017 W/cm2) ultraviolet (248 nm) radiation show that intense…”
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    Studies of Laser-Driven Shock Waves in Aluminum by Veeser, L. R., Solem, J. C.

    Published in Physical review letters (22-05-1978)
    “…The structure and velocity of laser-driven shock waves in Al foils were observed. Shock velocities as high as 13 km/sec and shock luminosity rise-times less…”
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    Corresponding aspects of strong-field multiquantum processes and ion-atom collisions by Boyer, K., Gibson, G., Jara, H., Luk, T.S., McIntyre, I.A., McPherson, A., Rosman, R., Solem, J.C., Rhodes, C.K.

    Published in IEEE transactions on plasma science (01-10-1988)
    “…An approximate correspondence between collisional processes and the interaction of atoms with intense short pulses of radiation yields simple relations…”
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    Relativistic and charge-displacement self-channeling of intense ultrashort laser pulses in plasmas by Borisov, AB, Borovskiy, AV, Shiryaev, OB, Korobkin, VV, Prokhorov, AM, Solem, JC, Luk, TS, Boyer, K, Rhodes, CK

    “…A simple derivation in the Coulomb gauge of the nonlinear Schroedinger equation describing propagation of powerful ultrashort circularly polarized laser pulses…”
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    Impedance-match experiments using laser-driven shock waves by Veeser, L. R., Solem, J. C., Lieber, A. J.

    Published in Applied physics letters (01-01-1979)
    “…A high-energy laser pulse has been used to drive a shock wave into a foil target. Pressures of 0.3 TPa in aluminum and 0.6 TPa in a gold overlay were inferred…”
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    Self-assembling micrites based on the Platonic solids by Solem, Johndale C.

    Published in Robotics and autonomous systems (28-02-2002)
    “…Micrites capable of assembling into arbitrary shapes in three dimensions, with the constraint of a single species, might be most effectively fabricated in the…”
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    Density and size of comet Shoemaker-Levy 9 deduced from a tidal breakup model by Solem, Johndale C

    Published in Nature (London) (04-08-1994)
    “…A study simulated the tidal breakup of the parent comet of Shoemaker-Levy 9. The density and size of the comet is deduced from the simulation…”
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