Abstract submission deadline extended: February 28, 2022 · Registration via E-Mail opens: November 1, 2021 · Workshop: Goslar, Germany, May 11 - 13, 2022 For registration and abstract submission please […] Progress in Doping LN Crystals Nankai University · Andrzej Suchocki Mechanoluminescence phenomena in LiNb1-xTaxO3:Pr Polish Academy of Sciences · Carlotta Canalias Recent Advances in Domain Structuring in KTP […] Mathematics · Dmitrii Roshchupkin Growth of Congruent and Stoichiometric Lithium Niobate-Tantalate LiNb(1-x)TaxO3 Ferreolectric Crystals Russian Academy of Sciences · Daniel Rytz KNbO3 and BaTiO3 Crystal Growth
Experimentalphysik für Ingenieure (WS 04/05, Prof. Dr. W. Daum) Version 1 Version 2 Version MB-Intensiv Lösung zur Aufgabe 1 von Version 1 + 2 Stoff der Vorlesungen Experimentalphysik I und II (WS 02/03, SS […] für Ingenieure (SS 05, Prof. Dr. W. Daum) Version MB-Intensiv Musterlösungen zu MB-Intensiv Version 1 Version 2 Übungen zur Vorlesung Experimentalphysik I für Ingenieure (WS 04/05, Prof. Dr. W. Daum) Alle
the Electrical Conductivity and Non-Stoichiometry of Thin Film Ce1−xZrxO2−δ by a Resonant Nanobalance Approach Materials 2021, 14, 748 (1-26); doi.org/10.3390/ma14040748 I. Kogut, C. Steiner, H. Wulfmeier […] Rembe, H. Fritze; Extraction of nanometer-scale displacements from noisy signals at frequencies down to 1 mHz obtained by differential laser Doppler vibrometry; Journal of Sensors and Sensor Systems Vol. 13 […] Schäfer, S. Ganschow, K.-D. Becker, S. Sanna, H. Fritze, Evolution of the Electrical Conductivity of LiNb1-XTaXO3 Solid Solutions across the Ferroelectric Phase Transformation, Physica Status Solidi A (2024)
10.5162/SMSI2021/A1.1 W. L. Johnson, Yu. Suhak, H. Fritze, Mechanisms of Anelastic Loss in Langasite at Temperatures from 113 K to 1324 K, SMSI 21 Conference; doi: 10.5162/SMSI2021/A2.1 Yu. Suhak, B. Jerliu […] Conference; doi: 10.5162/SMSI2021/A1.3 Yu. Suhak, A. Kabir, D. Roshchupkin, B. Red’kin, S. Ganschow, H. Fritze, Oxygen Partial Pressure Dependent Electrical Conductivity of LiNb1−xTaxO3 Solid Solutions, SMSI […] Sugak, I.I. Syvorotka, S. Hurskyj, U. Yakhnevych, V. Hreb, Yu. Suhak, H. Fritze Investigations of LiNb1-xTaxO3 compounds with the stoichiometric composition as well as with the planned deviation from sto
Soc. Am. B 19, 1822 (2002) D. Kip, M. Soljacic, M. Segev, S. M. Sears and D. N. Christodoulides (1+1) Dimensional modulation instability of spatially-incoherent light J. Opt. Soc. Am. B 19, 502 (2002) […] Xu, Q. Sun and D. Kip Photorefractive materials: Physical phenomena and applications Opt. Mat. 23, 1 (2003) J. Imbrock, C. Bäumer, F. Holtmann, H. Hesse, E. Krätzig and D. Kip Photorefractive properties […] Bragg gratings in photorefractive lithium niobate channel waveguides J. Phys. D: Appl. Phys. 36, R1 (2003) M. N. Frolova, M. V. Borodin, S. M. Shandarov, V. M. Shandarov, Yu. F. Kargin, A. V. Egorysheva
Klausur vom SS06 Version 1 Version 2 Version für den Intensivstudiengang Klausur vom WS2005/06 Version 1 Version 2 Version für den Intensivstudiengang Klausur vom SS2002 Version 1 Version 2 Version 3 Version […] Klausur vom WS2001/02 Version 1 Version 2 Version 3 Version für den Intensivstudiengang Übungsblätter zur Vorlesung Experimentalphysik für Ingenieure II vom SS 2006 Blatt1 Blatt2 Blatt3 Blatt4 Blatt5 Blatt6 […] Blatt6 Blatt7 Blatt8 Blatt9 Blatt10 Blatt11 Blatt12 Prof. Dr. Volker Kempter Klausur vom SS2003 Version 1 Version 2 Version für den Intensivstudiengang Klausur vom WS2002/03 Alle Versionen
Bergfeld, and W. Daum Surface Second-Harmonic Generation from Si(111)(1x1)H: Theory versus Experiment Phys. Rev. B 66 , 195329-1-5 (2002) F. Dederichs, A. Petukhova, and W. Daum Adsorption of CN at the […] 420g L. Caccamo, C. Fabrega, M. Marschewski, et al. Charge Transfer Characteristics of n‑type In 0.1 Ga 0.9 N Photoanode across Semiconductor−Liquid Interface J. Phys. Chem. C 120 , 28917−28923 (2016) […] G. Martin, et al. Insights into Interfacial Changes and Photoelectrochemical Stability of In x Ga 1−x N (0001) Photoanode Surfaces in Liquid Environments ACC Appl. Mater. Interfaces 8 , 8232−8238 (2016)
7b03879 L. Caccamo, C. Fabrega, M. Marschewski, et al. Charge Transfer Characteristics of n‑type In 0.1 Ga 0.9 N Photoanode across Semiconductor−Liquid Interface J. Phys. Chem. C 120 , 28917−28923 (2016) […] G. Martin, et al. Insights into Interfacial Changes and Photoelectrochemical Stability of In x Ga 1−x N (0001) Photoanode Surfaces in Liquid Environments ACC Appl. Mater. Interfaces 8 , 8232−8238 (2016) […] deposition: A low-energy electron microscopy study J. Appl. Phys. 118 , 055701 (2015) DOI: 10.1063/1.4927725 J. Hartmann, X. Wang, H. Schumann, et al. Growth mechanisms of GaN microrods for 3D core–shell
zu entnehmen: Aus der vom Femtosekunden-Lasersystem kommenden Laserstrahlung entfernt der Filtersatz 1 erwünschten Strahlung. Der Strahlteiler reflektiert einen Teil der verbleibenden Laserstrahlung in eine