Czasopismo
Tytuł artykułu
Autorzy
Warianty tytułu
Języki publikacji
Abstrakty
Several work proceeded at the Fraunhofer Institute IZFP/EADQ Dresden on photo and paraticle acoustic methods is reviewed. It includes both modelling activities and experimetal work. The range of applied excitations covers photons, electrons, and high energy (hundreds of MeV/amu) ions. Both time resolved measurements by pulse excitation as well as monofrequent measurements by periodic excitations together with signal recovery (lock-in technique) are concidered.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
225-238
Opis fizyczny
Bibliogr. 15 poz., rys.
Twórcy
autor
- Fraunhofer IZFP/EADQ Dresden, Krugerstrasse 22, D-01326 Dresden, Germany, koehler@eadq.izfp.fhg.de
autor
- Fraunhofer IZFP/EADQ Dresden, Krugerstrasse 22, D-01326 Dresden, Germany
autor
- European Aeronautic Defence and Space Company - EADS, Corporate Research Center Germany, D-81663 Munich, Germany
autor
- SIEMENS AG, ICM - Information & Communication mobile, SUdstrasse 9, D-47475 Kamp-Lintfort, Germany
Bibliografia
- 1. P. Fellinger, R. Marklein , K.J. Langenberg, S. Klaholz, Wave Motion 21, Numerical modeling of elastic wave propagation and scattering with EFIT - Elastodynamic finite integration technique”, 47 (1995)
- 2. F. Schubert, A. Peiffer, B. Köhler and T. Sanderson, The elastodynamic finite integration technique for waves in cylindrical geometries, J. Acoust. Soc. Am. 104 (5), 2604-2614, (1998)
- 3. T. Sanderson, C. Ume and J. Jarzynski, Ultrasonics 35, “Laser generated ultrasound: A thermoelastic analysis of the source”, 115-117, (1997)
- 4. N. Hoppe, “Charakterisierung thermoelastischer Quellen”, diploma thesis, Technical University Dresden, Dept, of Electrical Engineering, Germany, 1997
- 5. A. Peiffer, Ein Beitrag zur Anwendung der ionenakustischen Dosisbestimmung in der Tumortherapie mit Schwerionen, Aachen, 1999
- 6. A. Peiffer et al., "The acoustic finite integration technique for waves of cylindrical symmetry (CAFIT)”, J. Acoust. Soc. Am. 102 (2), 697-706, (1997)
- 7. A. C. Tam, “Applications of photoacoustic sensing techniques”, Rev. of Modem Physics 58, 381-431,(1986)
- 8. A. Rocencwaig, R. M. White, Appl. Phys. Lett. 38, 165-168, (1981)
- 9. M. Domnik and L. J. Balk, “Signal generation and contrast mechanisms in electron and photo acoustic imaging of differently doped silicon, Acoustical Imaging 19 NY, 755-759, (1992)
- 10. M. Urchulutegui, J. Piqueras, J. Llopis, J. App. Phys. 65, 2677-280, (1989)
- 11. H. Takenoshita, M. Kobayashi, J. Electron Microsc. 40, 369-373, (1991)
- 12. C.A. Richey, G.J. Curtis, Acustica 79, 175-180, (1993)
- 13. Q.R. Yin, et al. Progress in natural Science 6, 115-118, (1996)
- 14. B.Y. Zhang, Q.R. Yin, Progress in natural Science 6, 123-126, (1996)
- 15. J. Piqueras, Jap. J. Appl. Phys. 37, 3128-3131, (1998)
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ6-0008-0068