244 results on '"Bellei C"'
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52. Low iron, high ferritin and high neuromelanin in locus coeruleus neurons. A biochemical profile with relevance to neuronal vulnerability in parkinsonian syndromes
53. Neuromelanin in the human brain: protective and toxic role
54. The role of neuromelanin and iron in brain aging and Parkinson's disease
55. Low iron, high ferritin and high neuromelanin in locus coeruleus neurons. A biochemical profile with relevance to neuronal vulnerability in parkinsonian syndromes
56. Characterization of laser-driven proton beams from near-critical density targets using copper activation
57. Asymptotic separation in multispecies collisional plasma shocks
58. Exploration of the Transition from the Hydrodynamiclike to the Strongly Kinetic Regime in Shock-Driven Implosions
59. Species separation and kinetic effects in collisional plasma shocks
60. Kinetic mix mechanisms in shock-driven inertial confinement fusion implosions
61. First Observations of Nonhydrodynamic Mix at the Fuel-Shell Interface in Shock-Driven Inertial Confinement Implosions
62. Improved laser-to-proton conversion efficiency in isolated reduced mass targets
63. Bright spatially coherent synchrotron X-rays from a table-top source
64. Characterization of High-Intensity Laser Propagation in the Relativistic Transparent Regime through Measurements of Energetic Proton Beams
65. Third harmonic order imaging as a focal spot diagnostic for high intensity laser-solid interactions
66. Observation of synchrotron radiation from electrons accelerated in a petawatt-laser-generated plasma cavity
67. Dynamic control of laser-produced proton beams
68. Laser driven MeV proton beam focussing by auto-charged electrostatic lens configuration
69. Nuclear activation as a high dynamic range diagnostic of laser-plasma interactions
70. Initial experimental evidence of self-collimation of target-normal-sheath-accelerated proton beam in a stack of conducting foils
71. Improved laser-to-proton conversion efficiency in isolated reduced mass targets
72. Fast ignition: Dependence of the ignition energy on source and target parameters for particle-in-cell-modelled energy and angular distributions of the fast electrons
73. Influence of fs-laser desorption on target normal sheath accelerated ions
74. Response to “Comment on ‘Species separation in inertial confinement fusion fuels’” [Phys. Plasmas 20, 044701 (2013)]
75. Species separation in inertial confinement fusion fuels
76. Cone-guided fast ignition withnoimposed magnetic fields
77. High harmonics from relativistically oscillating plasma surfaces - a high brightness attosecond source at keV photon energies
78. Bright multi-keV harmonic generation from relativistically oscillating plasma surfaces
79. Particle transport and electric fields in a laser-generated focused proton beam
80. Fast-ignition transport studies: Realistic electron source, integrated particle-in-cell and hydrodynamic modeling, imposed magnetic fields
81. Rayleigh-Taylor Instability of an Ultrathin Foil Accelerated by the Radiation Pressure of an Intense Laser
82. Proton trajectories and electric fields in a laser-accelerated focused proton beam
83. Self-modulated wakefield acceleration in a centimetre self-guiding channel
84. Electron and ion dynamics during the expansion of a laser-heated plasma under vacuum
85. Coherent transition radiation in relativistic laser–solid interactions
86. Effects of fs-laser desorption on the target normal sheath acceleration (TNSA)
87. Proton Focusing Characteristics Relevant to Fast Ignition
88. Bright spatially coherent synchrotron X-rays from a table-top source
89. Focusing of laser-accelerated protons for fast ignition studies
90. The potential role of electric fields and plasma barodiffusion on the inertial confinement fusion database
91. Study of near-GeV acceleration of electrons in a non-linear plasma wave driven by a self-guided laser pulse
92. Complete Temporal Characterization of Asymmetric Pulse Compression in a Laser Wakefield
93. Bright spatially coherent synchrotron X-rays from a table-top source
94. Magnetic collimation of petawatt driven fast electron beam for prospective fast ignition studies
95. Micron-scale fast electron filaments and recirculation determined from rear-side optical emission in high-intensity laser–solid interactions
96. Publisher’s Note: Near-GeV Acceleration of Electrons by a Nonlinear Plasma Wave Driven by a Self-Guided Laser Pulse [Phys. Rev. Lett.103, 035002 (2009)]
97. Near-GeV Acceleration of Electrons by a Nonlinear Plasma Wave Driven by a Self-Guided Laser Pulse
98. Sub-micron fast electron filamentation in high intensity laser-solid interactions
99. Comparative study of betatron radiation from laser-wakefield and direct-laser accelerated bunches of relativistic electrons
100. Characterization of High-Intensity Laser Propagation in the Relativistic Transparent Regime through Measurements of Energetic Proton Beams
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