Zobrazeno 1 - 10
of 16
pro vyhledávání: '"H. U. Karow"'
Autor:
O. Yu. Vorobjev, S. V. Razorenov, H. Bluhm, Vladimir E. Fortov, H. U. Karow, B. Goel, K. Baumung, Alexander Utkin, Peter Hoppe, D. Rusch, G. I. Kanel
Publikováno v:
Scopus-Elsevier
At the Karlsruhe Light Ion Facility (KALIF) high-power proton beams with power densities up to ∼ 1 TW/cm2 are generated depositing up to 40 kJ of ion energy in a focal spot of 6∼8-mm diameter. With peak proton energies of ∼ 1.7 MeV, specific po
Autor:
Vladimir E. Fortov, H. U. Karow, Alexander Utkin, S. V. Razorenov, K. Baumung, G. I. Kanel, A. S. Yarunichev
Publikováno v:
High Pressure Research. 13:367-376
Measurements of free surface velocity profiles of high-purity titanium samples under shock-wave loading were performed to study the dynamic strength and phase transition parameters. The peak pressu...
Autor:
H. U. Karow, K. Baumung, H. J. Bluhm, V. Licht, D. Rusch, Alexander Utkin, G. I. Kanel, P. Hoppé
Publikováno v:
Journal of Applied Physics. 75:7633-7638
The hydrodynamic response of thin planar targets to the ablative pressure pulse induced by a high‐power proton beam has been investigated experimentally at the Karlsruhe Light Ion Facility using time‐resolved laser‐Doppler velocimetry. An analy
Autor:
H. U. Karow, Vladimir E. Fortov, Alexander Utkin, S. V. Razorenov, G. I. Kanel, D. Rusch, K. Baumung, V. Licht
Publikováno v:
Journal of Applied Physics. 74:7162-7165
Spall strength measurements for commerical grade molybdenum and molybdenum single crystals were made in a wide range of load durations (∼10−9 s – 10−6 s) and intensities (∼5 – 100 GPa). Resistance to fracture of pure single crystals was f
Autor:
V. Licht, S. V. Razorenov, H. U. Karow, Alexander Utkin, K. Baumung, G. I. Kanel, H. J. Bluhm, D. Rusch, P. Hoppé
Publikováno v:
Il Nuovo Cimento A. 106:1771-1780
The performance of an extractor-type ion diode operated on the KALIF accelerator was improved recently to yield about 40 kJ of proton beam energy at an intensity of about 1 TW/cm2. With proton energies of 1.7 MeV simulations predict for the energy de
Autor:
O.Y. Vorobiev, G. I. Kanel, V. Light, K. Baumung, H. U. Karow, G. Kessler, Alexander Utkin, Vladimir E. Fortov, G. Goel
Publikováno v:
Scopus-Elsevier
The hydrodynamic response of thin plane targets to the action of the high-power proton beam of the Karlsruhe Light Ion Facility KALIF has been investigated using time-resolved one-dimensional (1-D) and two-dimensional (2-D) laser Doppler velocimetry
Autor:
Josef Singer, D. Rusch, H. U. Karow, O. Stoltz, A. V. Utkin, B. Goel, G. Meisel, H. Bluhm, K. Baumung, S. V. Razorenov, G. J. Kanel, Peter Hoppe
Publikováno v:
AIP Conference Proceedings.
In this paper we describe the development of a novel high‐resolution line‐imaging laser‐Doppler velocimeter to investigate the hydrodynamic response of planar solid targets to the irradiation with intense light ion beams. It is demonstrated tha
Autor:
V. Licht, H. U. Karow, S. V. Razorenov, Peter Hoppe, G. I. Kanel, K. Baumung, A. V. Utkin, D. Rusch, H. Bluhm
Publikováno v:
Shock Waves @ Marseille III ISBN: 9783642788376
The Karlsruhe Light Ion Facility (“KALIF”) is a pulse power accelerator delivering up to ~40 kj proton beam energy at power densities on target up to 1 TW/cm2. For the 10– to 20 μm-thick energy deposition layer in a solid target, simulations p
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::d3ae8adf9dbe33d96bc39bdae4a18a36
https://doi.org/10.1007/978-3-642-78835-2_44
https://doi.org/10.1007/978-3-642-78835-2_44
Publikováno v:
AIP Conference Proceedings.
Response of plane targets to the high‐power proton beam has been investigated using time‐resolved laser Doppler velocimetry with sub‐nanosecond temporal resolution. An acoustic model was established for a semi‐quantitative interpretation of t
Publikováno v:
AIP Conference Proceedings.
Spall strength measurements of aluminum, single crystals of molybdenum, niobium and aluminum oxide were performed over a wide range load durations. A very large dynamic tensile strength (20 GPa) has been registered for sapphire. Dynamic strength of m