Publications

Nikolay N. Nedialkov, S.E. Imamova, Petar A. Atanasov, Gerhard Heusel, Detlef Breitling, Andreas Ruf, Helmut Hügel, Friedrich Dausinger, und Peter Berger. Laser ablation of iron by ultrashort laser pulses. Thin Solid Films, (453-454):496-500, April 2004. [PUMA: myown Simulation Laser Modelling Ablation from:peterberger]

Petar A. Atanasov, Nikolay N. Nedialkov, S.E. Imamova, Andreas Ruf, Helmut Hügel, Friedrich Dausinger, und Peter Berger. Laser ablation of Ni by ultrashort pulses: molecular dynamics simulation. Applied Surface Science, (186):369-373, 2002. [PUMA: Simulation Laser Modelling Ablation from:peterberger]

Florian Fetzer, Peter Stritt, Peter Berger, Rudolf Weber, und Thomas Graf. Fast numerical method to predict the depth of laser welding. Journal of Laser Applications, (29)2:022012, 2017. [PUMA: Laser Modelling Peer Simulation Welding from:peterberger myown]

Karin Heller, Steffen Kessler, Friedhelm Dorsch, Peter Berger, und Thomas Graf. Analytical description of the surface temperature for the characterization of laser welding processes. International Journal of Heat and Mass Transfer, (106):958-969, 2017. [PUMA: Laser Modelling Simulation Welding from:peterberger myown peer]

Christian Freitag, Rudolf Weber, und Thomas Graf. Polarization dependence of laser interaction with carbon fibers and CFRP. Optics Express, (22)2:1474-1479, 2014. [PUMA: Laser LaserMatterInteraction Modelling Simulation from:peterberger myown]

Xiangzhong Jin, Peter Berger, und Thomas Graf. Multiple reflections and Fresnel absorption in an actual 3D keyhole during deep penetration laser welding. Journal of Physics D: Applied Physics, (39):4703, 2006. [PUMA: Laser LaserMatterInteraction Modelling Peer Simulation Welding from:peterberger myown]

R. Klieber, Andreas Michalowski, R. Neuhaus, und D. Suter. Nuclear quadrupole resonance of an electronically excited statefrom high-resolution hole-burning spectroscopy. Physical Review B, (67):184103-1 - 184103-6, 2003. [PUMA: Modelling Laser Diagnostics LaserMatterInteraction from:peterberger Peer Simulation]

Andreas Ruf, Peter Berger, Friedrich Dausinger, und Helmut Hügel. Analytical investigations on geometrical influences on laser drilling. Journal of Physics D: Applied Physics, (34):2918, 2001. [PUMA: Modelling Laser Diagnostics LaserMatterInteraction from:peterberger Peer Simulation]

Detlef Breitling, Henrik Schittenhelm, Peter Berger, Friedrich Dausinger, und Helmut Hügel. Shadowgraphic and interferometric investigations on Nd:YAG laser-induced vapor/plasma plumes for different processing wavelengths. Applied Physics, A 69 [Suppl]:505, 1999. [PUMA: Modelling Laser Diagnostics LaserMatterInteraction from:peterberger Simulation]

Gert Callies, Henrik Schittenhelm, Peter Berger, und Helmut Hügel. Modeling of cluster generation in excimer laser induced plasma/vapour plumes. (EUROMECH Colloqium 363, Mechanics of Laser Ablation, 23.-26. June 1997). Thermo, (5)2:235, 1998. [PUMA: Modelling Laser from:peterberger Simulation Ablation]

Helmut Hügel, Henrik Schittenhelm, Knut Jasper, Gert Callies, und Peter Berger. Structuring with excimer lasers-experimental and theoretical investigations on quality and efficiency. Journal of Laser Applications, (10)6:255, 1998. [PUMA: Modelling Laser Diagnostics LaserMatterInteraction from:peterberger Peer Simulation]

Karsten Contag, Martin Karszewski, Carsten Stewen, Adolf Giesen, und Helmut Hügel. Theoretical modelling and experimental investigations of the diode-pumped thin disk Yb:YAG laser. Quantum Electronics, (29)8:697, 1999. [PUMA: Modelling Laser from:peterberger Diodepumped Simulation]

Gert Callies, Henrik Schittenhelm, Peter Berger, und Helmut Hügel. Modeling of the expansion of laser-evapourated matter in argon, helium and nitrogen and the condensation of clusters. Applied Surface Science, (127):131, 1998. [PUMA: Modelling Laser from:peterberger Simulation Ablation]

Klaus Wittig, Adolf Giesen, und Helmut Hügel. An algebraic approach to characterize paraxial optical systems. Applied Optics, (33):3837, 1994. [PUMA: Modelling Laser from:peterberger OpticalElements Simulation]

Markus Beck, Markus Kern, Peter Berger, und Helmut Hügel. Einfluß der Plasmawolke auf Einkopplung und Prozeßstabilität beim Lasertiefschweißen mit CO2-Lasern. Laser und Optoelektronik, (28)4:72-78, 1996. [PUMA: Laser Modelling Simulation Welding from:peterberger]

Markus Beck, Friedrich Dausinger, und Helmut Hügel. Studie zur Energieeinkopplung beim Tiefschweißen mit Laserstrahlung. Laser und Optoelektronik, (21)3:80 - 84, AT-Fachverlag, Stuttgart, 1989. [PUMA: Laser Modelling Simulation Welding from:peterberger]

Markus Beck, Peter Berger, und Helmut Hügel. The effect of plasma formation on beam focusing in deep penetration welding with CO2 lasers. Journal of Physics D: Applied Physics, (28):2430, 1995. [PUMA: Modelling Laser Welding from:peterberger Simulation]