Publications

Iuliia Neumann, und Bertold Rasche. In situ diffraction in electrochemistry – A practical introduction for experiments beyond batteries. Current Opinion in Electrochemistry, (39):101288, Juni 2023. [PUMA: Metastable_phases Neutron_diffraction Transition_states X-ray_diffraction diffraction myown] URL

Florian Bienert, Fangfang Li, Marina Fetisova, Petri Karvinen, Markku Kuittinen, Thomas Graf, und Marwan Abdou Ahmed. Diode stabilization with dual duty-cycle resonant waveguide grating. Laser Congress 2023 (ASSL, LAC), AW3A.5, Optica Publishing Group, 2023. [PUMA: Diode Laser Lithography Volume Waveguide diffraction gratings infrared lasers myown operation peer] URL

Florian Bienert, Christoph Röcker, Thomas Graf, und Marwan Abdou Ahmed. Simple spatially resolved period measurement of chirped pulse compression gratings. Opt. Express, (31)12:19392--19403, Optica Publishing Group, Juni 2023. [PUMA: myown chirp diffraction peer interference diffraction_grating from:florianbienert] URL

Florian Bienert, Thomas Graf, und Marwan Abdou Ahmed. General mathematical model for the period chirp in interference lithography. Opt. Express, (31)4:5334--5346, Optica Publishing Group, Februar 2023. [PUMA: chirp diffraction diffraction_grating interference myown peer] URL

Florian Bienert, Thomas Graf, und Marwan Abdou Ahmed. General mathematical model for the period chirp in interference lithography. Opt. Express, (31)4:5334--5346, Optica Publishing Group, Februar 2023. [PUMA: myown chirp period Interference diffraction Laser-Interference-Lithography diffraction_grating shaping from:florianbienert mathematical Beam peer Laser beams gratings interference model Gaussian Holographic Scanning-Beam-Interference-Lithography] URL

Ayoub Boubekraoui, Frieder Beirow, Thomas Graf, und Marwan Abdou Ahmed. Intra-cavity wavelength multiplexing of high-brightness thin-disk laser beams. Applied Physics B, (128)7:120--, 2022. [PUMA: myown grating diffraction laser peer from:a.boubekraoui Thin-disk] URL

Ayoub Boubekraoui, Frieder Beirow, Thomas Graf, und Marwan Abdou Ahmed. Intra-cavity wavelength multiplexing of high-brightness thin-disk laser beams. Applied Physics B, (128)7:120--, 2022. [PUMA: Thin-disk diffraction grating laser myown peer] URL

Arne Haaland, Kjell-Gunnar Martinsen, H. V. Volden, Wolfgang Kaim, Eberhard Waldhoer, Werner Uhl, und Uwe. Schuetz. Gas-Phase Structure of the Monomeric Alkylgallium(I) Compound Ga[C(SiMe3)3] and the Electrochemical Behavior of Ga4[C(SiMe3)3]4 and In4[C(SiMe3)3]4 with EPR Evidence for a Ga4R4 Radical Anion. Organometallics, (15)4:1146--1150, 1996. [PUMA: ESR anion cyclic diffraction formation gallium indium;electron mol monomeric radical silylmethyl silylmethylgallium;silylmethyl structure voltammetry]

Florian Bienert, Thomas Graf, und Marwan Abdou Ahmed. Theoretical investigation on the elimination of the period chirp by deliberate substrate deformations. Optics Express, (30)13:22410, Optica Publishing Group, Juni 2022. [PUMA: LIL algorithm chirp diffraction diffraction_grating grating interference interference_lithography myown peer therory] URL

Florian Bienert, Thomas Graf, und Marwan Abdou Ahmed. Theoretical investigation on the elimination of the period chirp by deliberate substrate deformations. Optics Express, (30)13:22410, Optica Publishing Group, Juni 2022. [PUMA: myown chirp diffraction diffraction_grating interference_lithography LIL from:florianbienert grating peer interference therory algorithm] URL

Florian Bienert, Thomas Graf, und Marwan Abdou Ahmed. Comprehensive theoretical analysis of the period chirp in laser interference lithography. Appl. Opt., (61)9:2313--2326, OSA, März 2022. [PUMA: chirp period Interference diffraction_grating Laser_beam ltihography interference_lithography from:florianbienert ifsw Diffraction grating] URL

Florian Bienert, Thomas Graf, und Marwan Abdou Ahmed. Comprehensive theoretical analysis of the period chirp in laser interference lithography. Appl. Opt., (61)9:2313--2326, OSA, März 2022. [PUMA: Diffraction Interference Laser_beam chirp diffraction_grating grating ifsw interference_lithography ltihography period] URL

Yuan Qin, Andreas Michalowski, Rudolf Weber, Sen Yang, Thomas Graf, und Xiaowu Ni. Comparison between ray-tracing and physical optics for the computation of light absorption in capillaries -- the influence of diffraction and interference. Opt. Express, (20)24:26606--26617, OSA, November 2012. [PUMA: Absorption Capillary Diffraction Interference Laser RayTracing from:peterberger peer] URL

Yuan Qin, Andreas Michalowski, Rudolf Weber, Sen Yang, Thomas Graf, und Xiaowu Ni. Comparison between ray-tracing and physical optics for the computation of light absorption in capillaries -- the influence of diffraction and interference. Opt. Express, (20)24:26606--26617, OSA, November 2012. [PUMA: Absorption Capillary Diffraction Interference Laser RayTracing] URL

Arne Haaland, Kjell-Gunnar Martinsen, H. V. Volden, Wolfgang Kaim, Eberhard Waldhoer, Werner Uhl, und Uwe. Schuetz. Gas-Phase Structure of the Monomeric Alkylgallium(I) Compound Ga[C(SiMe3)3] and the Electrochemical Behavior of Ga4[C(SiMe3)3]4 and In4[C(SiMe3)3]4 with EPR Evidence for a Ga4R4 Radical Anion. Organometallics, (15)4:1146--1150, 1996. [PUMA: ESR anion cyclic diffraction formation gallium indium;electron mol monomeric radical silylmethyl silylmethylgallium;silylmethyl structure voltammetry]

N. Strachwitz. Charakterisierung und Funktionstest eines neuen Strahlteilungskonzptes auf Basis von Beugungsgittern für den Einsatz in der Photovoltaikindustrie. IFSW09-11April 2009. [PUMA: AbdouAhmed,Marwan Diffraction Laser OpticalElements Studienarbeit]

N. Strachwitz. Charakterisierung und Funktionstest eines neuen Strahlteilungskonzptes auf Basis von Beugungsgittern für den Einsatz in der Photovoltaikindustrie. IFSW09-11April 2009. [PUMA: Studienarbeit Diffraction Laser OpticalElements from:florianfetzer AbdouAhmed,Marwan]

F. Mörz, R. Semenyshyn, T. Steinle, F. Neubrech, U. Zschieschang, A. Steinmann, und H. Giessen. Nearly diffraction limited FTIR mapping using an ultrastable broadband femtosecond laser tunable from 1.33 to 8 µm. Opt. Express, (25)26:32355, 2017. [PUMA: Diffraction FTIR mapping]

T. Steinle, J. N. Greiner, J. Wrachtrup, H. Giessen, und I. Gerhardt. Unbiased all-optical random-number generator. Phys. Rev., (X)7:041050, 2017. [PUMA: FTIR diffraction mapping]

Ning Yan Zhu, und Mikhail A. Lyalinov. Diffraction of a plane electromagnetic wave by a uniformly moving, anisotropic impedance wedge. 2017 XXXIInd General Assembly and Scientific Symposium of the International Union of Radio Science (URSI GASS), 2017. [PUMA: Diffraction scattering Electromagnetic Closed-form impedance Surface from:yvesm Impedance solutionssend:unibiblio] URL