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020 $a9783110354324$q(electronic bk.)
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245 00 $aOptically induced nanostructures :$bbiomedical and technical applications /$cedited by Karsten König and Andreas Ostendorf.
264 1 $aBerlin, Germany ;$aBoston, Massachusetts :$bDe Gruyter,$c2015.
264 4 $c©2015
300 $a1 online resource (370 pages) :$billustrations
336 $atext$btxt$2rdacontent
337 $acomputer$bc$2rdamedia
338 $aonline resource$bcr$2rdacarrier
504 $aIncludes bibliographical references at the end of each chapters and index.
588 0 $aPrint version record.
546 $aEnglish.
505 00 $tFrontmatter --$tForeword 1 --$tForeword 2 --$tContents --$tAuthors --$tTutorial /$rOstendorf, A. ; König, K. --$t1. Nanoprocessing using near-infrared sub-15 femtosecond laser microscopes /$rKönig, K. ; Seidel, H. ; Afshar, M. ; Klötzer, M. ; Feili, D. ; Straub, M. --$t2. Nanophotonic applications of fs-laser radiation induced nanostructures and their theoretical description /$rReininghaus, M. ; Ivanov, D. ; Maß, T.W.W. ; Eckert, S. ; Juschkin, L. ; Garcia, M.E. ; Taubner, T. ; Poprawe, and R. --$t3. Temporally shaped femtosecond laser pulses for creation of functional sub-100nm structures in dielectrics /$rGötte, N. ; Kusserow, T. ; Winkler, T. ; Sarpe, C. ; Englert, L. ; Otto, D. ; Meinl, T. ; Khan, Y. ; Zielinski, B. ; Senftleben, A. ; Wollenhaupt, M. ; Hillmer, H. ; Baumert, T. --$t4. Design and fabrication of near- to far-field transformers by sub-100nm two-photon polymerization /$rReinhardt, C. ; Ferreras Paz, V. ; Zheng, L. ; Kurselis, K. ; Birr, T. ; Zywietz, U. ; Chichkov, B. ; Frenner, K. ; Osten, W. --$t5. Ultrashort pulse-induced periodic nanostructures in bulk glass: from fundamentals to applications in high-resolution microscopy /$rZimmermann, F. ; Richter, S. ; Buschlinger, R. ; Shukla, S. ; Heintzmann, R. ; Peschel, U. ; Nolte, S. --$t6. Nonlinear processing and multiphoton ablation of self-assembled monolayers for application as ultrathin resists and in biochemical sensors /$rHartmann, N. ; Franzka, S. ; Schröter, A. ; Aumann, A. ; Ostendorf, A. --$t7. Femtosecond laser-induced surface nanostructures for tribological applications /$rBonse, J. ; Höhm, S. ; Hartelt, M. ; Spaltmann, D. ; Pentzien, S. ; Koter, R. ; Marschner, S. ; Rosenfeld, A. ; Krüger, J. --$t1. Optical reprogramming and optical characterization of cells using femtosecond lasers /$rUchugonova, A. ; Breunig, H.G. ; Augspurger, C. ; Monaghan, M. ; Schenke-Layland, K. ; König, K. --$t2. Nanoscale biofunctionalization of polymer surfaces by laser treatment for controlled cellular differentiation /$rSteger, M. ; Abagnale, G. ; Bremus-Köbberling, E. ; Wagner, W. ; Gillner, A. --$t3. Laser-generated bioactive hydrogels as ion-release systems for burn wound therapy /$rCoger, V. ; Million, N. ; Wilke, P. ; Pich, A. ; Vogt, P.M. ; Reimers, K. ; Barcikowski, S. --$t4. Nanoparticle-loaded bioactive hydrogels /$rWallat, K. ; Gepp, M.M. ; Berger, S. ; Le Harzic, R. ; Neubauer, J.C. ; Zimmermann, H. ; Stracke, F. ; Epple, M. --$t5. Two-photon polymerization of inorganic-organic polymers for biomedical and microoptical applications /$rBurmeister, F. ; Steenhusen, S. ; Houbertz, R. ; Asche, T.S. ; Nickel, J. ; Nolte, S. ; Tucher, N. ; Josten, P. ; Obel, K. ; Wolter, H. ; Fessel, S. ; Schneider, A.M. ; Gärtner, K.-H. ; Beck, C. ; Behrens, P. ; Tünnermann, A. ; Walles, H. --$t6. Optical antennae for near-field induced nonlinear photochemical reactions of photolabile azo- and amine groups /$rReichenbach, P. ; Georgi, U. ; Oertel, U. ; Kämpfe, T. ; Nitzsche, B. ; Voit, B. ; Eng, L.M. --$t7. Optical trap assisted sub diffraction limited laser structuring /$rAlexeev, I. ; Quentin, U. ; Leitz, K.-H. ; Strauß, J. ; Baum, M. ; Stelzle, F. ; Schmidt, M. --$t8. STED lithography and protein nanoanchors /$rKlar, T.A. --$tIndex.
520 $aNanostructuring of materials is a task at the heart of many modern disciplines in mechanical engineering, as well as optics, electronics, and the life sciences. This book includes an introduction to the relevant nonlinear optical processes as well as coverage of state-of-the-art applications of non-UV radiation such as cell reprogramming, surface treatments of implants, production of nanowires, friction modification, and 3D data storage.
650 0 $aNanostructured materials$xOptical properties.
650 0 $aBiomedical engineering.
650 0 $aNonlinear optics.
650 0 $aFemtosecond lasers.
650 0 $aLasers.
650 0 $aPhysical sciences.
650 0 $aManufactures.
650 0 $aMicroelectronics.
650 0 $aTechnology.
650 0 $aNanotechnology.
650 2 $aLasers
650 2 $aTechnology, Industry, Agriculture
650 2 $aOptical Devices
650 2 $aNatural Science Disciplines
650 2 $aRadiation Equipment and Supplies
650 2 $aPhysical Phenomena
650 2 $aManufactured Materials
650 2 $aMiniaturization
650 2 $aOptical Phenomena
650 2 $aEquipment and Supplies
650 2 $aDisciplines and Occupations
650 2 $aTechnology
650 2 $aTechnology, Industry, and Agriculture
650 2 $aPhenomena and Processes
650 2 $aAnalytical, Diagnostic and Therapeutic Techniques and Equipment
650 2 $aNanostructures
650 2 $aNanotechnology
650 2 $aBiomedical Technology
650 2 $aBiomedical Engineering
650 6 $aNanomatériaux$xPropriétés optiques.
650 6 $aGénie biomédical.
650 6 $aOptique non linéaire.
650 6 $aLasers femtosecondes.
650 6 $aLasers.
650 6 $aSciences physiques.
650 6 $aPhénomènes physiques.
650 6 $aProduits manufacturés.
650 6 $aMicroélectronique.
650 6 $aTechnologie.
650 6 $aNanotechnologie.
650 7 $abiomedical engineering.$2aat
650 7 $aphysical sciences.$2aat
650 7 $amicroelectronics.$2aat
650 7 $aBiomedical engineering.$2fast$0(OCoLC)fst00832568
650 7 $aFemtosecond lasers.$2fast$0(OCoLC)fst01747414
650 7 $aNanostructured materials$xOptical properties.$2fast$0(OCoLC)fst01032633
650 7 $aNonlinear optics.$2fast$0(OCoLC)fst01038797
650 7 $aChemical & Materials Engineering.$2hilcc
650 7 $aEngineering & Applied Sciences.$2hilcc
650 7 $aMaterials Science.$2hilcc
650 7 $aEngineering$xMechanical Engineering$xTools and Methods.$2nli
650 7 $aPhysics$xCondensed Matter Physics.$2nli
650 7 $aPhysics$xElectromagnetism, Optics and Photonics.$2nli
655 4 $aElectronic books.
700 1 $aKönig, Karsten,$eeditor.
700 1 $aOstendorf, Andreas,$eeditor.
776 08 $iPrint version:$tOptically induced nanostructures : biomedical and technical applications.$dBerlin, Germany ; Boston, Massachusetts : De Gruyter, ©2015$hxl, 329 pages$z9783110337181
856 40 $uhttp://www.columbia.edu/cgi-bin/cul/resolve?clio12335710$zACADEMIC - Biochemistry, Biology & Biotechnology
852 8 $blweb$hEBOOKS