Artículos de revistas sobre el tema "Nonlinear optical microscopies"
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Li, Rui, Yajun Zhang, Xuefeng Xu, Yi Zhou, Maodu Chen y Mengtao Sun. "Optical characterizations of two-dimensional materials using nonlinear optical microscopies of CARS, TPEF, and SHG". Nanophotonics 7, n.º 5 (24 de mayo de 2018): 873–81. http://dx.doi.org/10.1515/nanoph-2018-0002.
Texto completoKang, Dawei, Rui Li, Shuo Cao y Mengtao Sun. "Nonlinear optical microscopies: physical principle and applications". Applied Spectroscopy Reviews 56, n.º 1 (27 de febrero de 2020): 52–66. http://dx.doi.org/10.1080/05704928.2020.1728295.
Texto completoDevadas, Mary Sajini, Tuphan Devkota, Paul Johns, Zhongming Li, Shun Shang Lo, Kuai Yu, Libai Huang y Gregory V. Hartland. "Imaging nano-objects by linear and nonlinear optical absorption microscopies". Nanotechnology 26, n.º 35 (12 de agosto de 2015): 354001. http://dx.doi.org/10.1088/0957-4484/26/35/354001.
Texto completoMi, Xiaohu, Yuyang Wang, Rui Li, Mengtao Sun, Zhenglong Zhang y Hairong Zheng. "Multiple surface plasmon resonances enhanced nonlinear optical microscopy". Nanophotonics 8, n.º 3 (7 de febrero de 2019): 487–93. http://dx.doi.org/10.1515/nanoph-2018-0231.
Texto completoMiyauchi, Yoshihiro, Haruyuki Sano y Goro Mizutani. "Solid State Surfaces and Plants Observed by Second-Order Nonlinear Optical Microscopies". Journal of Surface Analysis 15, n.º 1 (2008): 2–15. http://dx.doi.org/10.1384/jsa.15.2.
Texto completoMa, Jialin y Mengtao Sun. "Nonlinear optical microscopies (NOMs) and plasmon-enhanced NOMs for biology and 2D materials". Nanophotonics 9, n.º 6 (10 de abril de 2020): 1341–58. http://dx.doi.org/10.1515/nanoph-2020-0082.
Texto completoAdur, Javier, Vitor B. Pelegati, Andre A. de Thomaz, Mariana O. Baratti, Diogo B. Almeida, L. A. L. A. Andrade, Fátima Bottcher-Luiz, Hernandes F. Carvalho y Carlos L. Cesar. "Optical Biomarkers of Serous and Mucinous Human Ovarian Tumor Assessed with Nonlinear Optics Microscopies". PLoS ONE 7, n.º 10 (8 de octubre de 2012): e47007. http://dx.doi.org/10.1371/journal.pone.0047007.
Texto completoChicanne, C., S. Emonin, N. Richard, T. David, E. Bourillot, J. P. Goudonnet y Y. Lacroute. "Characterization of optogeometric parameters of optical fibers by near-field scanning probe microscopies". Journal of the Optical Society of America B 17, n.º 9 (1 de septiembre de 2000): 1473. http://dx.doi.org/10.1364/josab.17.001473.
Texto completoDal Fovo, A., M. Sanz, S. Mattana, M. Oujja, M. Marchetti, F. S. Pavone, R. Cicchi, R. Fontana y M. Castillejo. "Safe limits for the application of nonlinear optical microscopies to cultural heritage: A new method for in-situ assessment". Microchemical Journal 154 (mayo de 2020): 104568. http://dx.doi.org/10.1016/j.microc.2019.104568.
Texto completoLagugné-Labarthet, F., C. Sourisseau, R. D. Schaller, R. J. Saykally y P. Rochon. "Chromophore Orientations in a Nonlinear Optical Azopolymer Diffraction Grating: Even and Odd Order Parameters from Far-Field Raman and Near-Field Second Harmonic Generation Microscopies". Journal of Physical Chemistry B 108, n.º 44 (noviembre de 2004): 17059–68. http://dx.doi.org/10.1021/jp047117k.
Texto completoCao, Yi, Jing Li, Mengtao Sun, Haiyan Liu y Lixin Xia. "Nonlinear Optical Microscopy and Plasmon Enhancement". Nanomaterials 12, n.º 8 (8 de abril de 2022): 1273. http://dx.doi.org/10.3390/nano12081273.
Texto completoGuo, Li Na, Zhi Lie Tang y Da Xing. "Microscopic Three-Dimensional Imaging Theory Based on RIKES". Key Engineering Materials 364-366 (diciembre de 2007): 1089–94. http://dx.doi.org/10.4028/www.scientific.net/kem.364-366.1089.
Texto completoMORALES-SAAVEDRA, OMAR G., ANTAL JÁKLI, GERD HEPPKE y HANS J. EICHLER. "POLAR MICRO STRUCTURES OF THE B2- AND B4-PHASES OF BENT-SHAPED LC-MOLECULES RESOLVED BY NONLINEAR OPTICAL MICROSCOPY". Journal of Nonlinear Optical Physics & Materials 15, n.º 02 (junio de 2006): 287–302. http://dx.doi.org/10.1142/s0218863506003293.
Texto completoMORALES-SAAVEDRA, OMAR G., JÁKLI ANTAL, HEPPKE GERD y EICHLER HANS J. "POLAR ORDERING IN THERMOTROPIC MESOGENS RESOLVED BY SCANNING NLO MICROSCOPY". Journal of Nonlinear Optical Physics & Materials 15, n.º 04 (diciembre de 2006): 431–46. http://dx.doi.org/10.1142/s0218863506003396.
Texto completoLEDOUX, I. y J. ZYSS. "NONLINEAR ORGANIC MOLECULES AND MATERIALS FOR OPTOELECTRONIC DEVICES". Journal of Nonlinear Optical Physics & Materials 03, n.º 03 (julio de 1994): 287–316. http://dx.doi.org/10.1142/s0218199194000183.
Texto completoSchumacher, Zeno, Rasa Rejali, Raphael Pachlatko, Andreas Spielhofer, Philipp Nagler, Yoichi Miyahara, David G. Cooke y Peter Grütter. "Nanoscale force sensing of an ultrafast nonlinear optical response". Proceedings of the National Academy of Sciences 117, n.º 33 (4 de agosto de 2020): 19773–79. http://dx.doi.org/10.1073/pnas.2003945117.
Texto completoXiang, Bo, Raphael F. Ribeiro, Yingmin Li, Adam D. Dunkelberger, Blake B. Simpkins, Joel Yuen-Zhou y Wei Xiong. "Manipulating optical nonlinearities of molecular polaritons by delocalization". Science Advances 5, n.º 9 (septiembre de 2019): eaax5196. http://dx.doi.org/10.1126/sciadv.aax5196.
Texto completoCammarata, Antonio y James Rondinelli. "Microscopic interactions governing phase matchability in nonlinear optical materials". Journal of Materials Chemistry C 4, n.º 24 (2016): 5858–63. http://dx.doi.org/10.1039/c6tc01633b.
Texto completoNaskali, Liisa, Mikko J. Huttunen, Matti Virkki, Godofredo Bautista, András Dér y Martti Kauranen. "Microscopic Determination of Second-Order Nonlinear Optical Susceptibility Tensors". Journal of Physical Chemistry C 118, n.º 45 (31 de octubre de 2014): 26409–14. http://dx.doi.org/10.1021/jp509453b.
Texto completoCANFIELD, BRIAN K., SAMI KUJALA, KAISA LAIHO, KONSTANTINS JEFIMOVS, TUOMAS VALLIUS, JARI TURUNEN y MARTTI KAURANEN. "LINEAR AND NONLINEAR OPTICAL PROPERTIES OF GOLD NANOPARTICLES WITH BROKEN SYMMETRY". Journal of Nonlinear Optical Physics & Materials 15, n.º 01 (marzo de 2006): 43–53. http://dx.doi.org/10.1142/s0218863506003104.
Texto completoLu, Yalin y Kitt Reinhardt. "Domain-Reversed Lithium Niobate Single-Crystal Fibers are Potentially for Efficient Terahertz Wave Generation". Advances in OptoElectronics 2008 (30 de octubre de 2008): 1–5. http://dx.doi.org/10.1155/2008/208458.
Texto completoCHAKRABORTY, PURUSHOTTAM. "LAYERED SYNTHETIC MICROSTRUCTURES AS OPTICAL ELEMENTS FOR THE EXTREME ULTRAVIOLET AND SOFT X-RAYS". International Journal of Modern Physics B 05, n.º 13 (10 de agosto de 1991): 2133–228. http://dx.doi.org/10.1142/s0217979291000845.
Texto completoDíaz-García, María A. "Nonlinear optical properties of phthalocyanines and related compounds". Journal of Porphyrins and Phthalocyanines 13, n.º 04n05 (abril de 2009): 652–67. http://dx.doi.org/10.1142/s1088424609000784.
Texto completoXia, Mingjun, Zhanyu Hou, Yi Yang, Bo Xu, Lijuan Liu, Xiaoyang Wang, Zheshuai Lin, R. K. Li y Chuangtian Chen. "Chemical engineering of mixed halide hexaborates as nonlinear optical materials". RSC Advances 6, n.º 109 (2016): 107810–15. http://dx.doi.org/10.1039/c6ra21584j.
Texto completoYamanaka, Kazushi. "Ultrasonic Force Microscopy". MRS Bulletin 21, n.º 10 (octubre de 1996): 36–41. http://dx.doi.org/10.1557/s0883769400031626.
Texto completoLiu, Pengxiang, Chuncao Niu, Feng Qi, Wei Li, Weifan Li, Qiaoqiao Fu, Liyuan Guo y Zhongyang Li. "Phase-Matching in Nonlinear Crystal-Based Monochromatic Terahertz-Wave Generation". Crystals 12, n.º 9 (1 de septiembre de 2022): 1231. http://dx.doi.org/10.3390/cryst12091231.
Texto completoKumar, Sunil, Tschackad Kamali, Jonathan M. Levitte, Ori Katz, Boris Hermann, Rene Werkmeister, Boris Považay, Wolfgang Drexler, Angelika Unterhuber y Yaron Silberberg. "Single-pulse CARS based multimodal nonlinear optical microscope for bioimaging". Optics Express 23, n.º 10 (8 de mayo de 2015): 13082. http://dx.doi.org/10.1364/oe.23.013082.
Texto completoBagdinova, Anna N., Evgeny I. Demikhov, Nataliya G. Borisenko, Sergei M. Tolokonnikov, Gennadii V. Mishakov y Andrei V. Sharkov. "Periodic structures on liquid-phase smectic A, nematic and isotropic free surfaces". Beilstein Journal of Nanotechnology 9 (30 de enero de 2018): 342–52. http://dx.doi.org/10.3762/bjnano.9.34.
Texto completoYou, Fei, Bing Teng, Lin Hua Xia, Hui Xu, De Gao Zhong, Shi Ming Zhang, Yue Juan Yu y Jiang Tao Ma. "Surface Morphology and Shape Analysis of Nonlinear Optical Crystal DAST". Advanced Materials Research 197-198 (febrero de 2011): 306–9. http://dx.doi.org/10.4028/www.scientific.net/amr.197-198.306.
Texto completoChis, Mihaela, Hongzhen Wang, Christophe Cassagne, Charles Ciret y Georges Boudebs. "Dark field Z-scan microscopic configuration for nonlinear optical measurements: Numerical study". Journal of Nonlinear Optical Physics & Materials 27, n.º 04 (diciembre de 2018): 1850037. http://dx.doi.org/10.1142/s0218863518500376.
Texto completoLin, J., Y. Fujita y A. Neogi. "Saturation of two photon emission in ZnO nanoparticles with second order nonlinearity". RSC Advances 5, n.º 15 (2015): 10921–26. http://dx.doi.org/10.1039/c4ra08380f.
Texto completoWu, Kechen, Ping Lin, Xintao Wu y Ling Chen. "Synthesis, Characterization and Theoretical Investigation on the Optical Nonlinearity of WS4Co(dppe)(DMF) Heterometallic Cluster Compound". Laser Chemistry 18, n.º 4 (1 de enero de 2000): 193–201. http://dx.doi.org/10.1155/2000/98130.
Texto completoKOKHKHAROV, A. M., E. A. ZAKHIDOV, SH P. GOFUROV, S. A. BAKHRAMOV y U. K. MAKHMANOV. "CLUSTERIZATION OF FULLERENE C70 MOLECULES IN SOLUTIONS AND ITS INFLUENCE TO OPTICAL AND NONLINEAR OPTICAL PROPERTIES OF SOLUTIONS". International Journal of Nanoscience 12, n.º 04 (agosto de 2013): 1350027. http://dx.doi.org/10.1142/s0219581x13500270.
Texto completoRamya, Emusani, M. Veeramohan Rao y D. Narayana Rao. "Nonlinear optical properties of Ag-enriched ZnO nanostructures". Journal of Nonlinear Optical Physics & Materials 28, n.º 03 (septiembre de 2019): 1950027. http://dx.doi.org/10.1142/s0218863519500279.
Texto completoRamya, Emusani, Dushyant Kushavah, M. Veeramohan RaO, T. Arun Kumar y D. Narayana Rao. "Nonlinear Optical Properties of CdSe Quantum Dots Having Different Sizes". Journal of Nanoscience and Nanotechnology 20, n.º 12 (1 de diciembre de 2020): 7710–15. http://dx.doi.org/10.1166/jnn.2020.18610.
Texto completoLi, Weiqi, Wei Quan Tian y Xiudong Sun. "Understanding of nonlinear optical properties of CS2 from a microscopic viewpoint". Journal of Chemical Physics 137, n.º 8 (28 de agosto de 2012): 084315. http://dx.doi.org/10.1063/1.4748261.
Texto completoWang, Yuan y Liping Huang. "A Simplified Method of Microscopic Polarizability Tensor Differential of Hyper-Raman Spectroscopy Based on the Bond Additivity Model". International Journal of Optics 2022 (10 de marzo de 2022): 1–6. http://dx.doi.org/10.1155/2022/2710506.
Texto completoAtta, Ali, Mostufa M. Abdelhamied, Ahmed M. Abdelreheem y Mohamed R. Berber. "Flexible Methyl Cellulose/Polyaniline/Silver Composite Films with Enhanced Linear and Nonlinear Optical Properties". Polymers 13, n.º 8 (10 de abril de 2021): 1225. http://dx.doi.org/10.3390/polym13081225.
Texto completoJacob, David S., Somashekarappa Mallenahalli, Aharon Gedanken, Leonid A. Solovyov, Evangelia Xenogiannopoulou, Konstantinos Iliopoulos y Stelios Couris. "Synthesis of one-dimensional structured metal phthalocyanine in an ionic liquid". Journal of Porphyrins and Phthalocyanines 11, n.º 10 (octubre de 2007): 713–18. http://dx.doi.org/10.1142/s1088424607000813.
Texto completoGuo, Zhongping, Jian Li, Yongqi Song, Chengqian He y Fuyu Zhang. "The Size Effect and Microstructure Changes of Granite after Heat Treatment". Advances in Materials Science and Engineering 2021 (1 de julio de 2021): 1–14. http://dx.doi.org/10.1155/2021/9958255.
Texto completoKELLER, O. "QUANTUM DOTS OF LIGHT". Journal of Nonlinear Optical Physics & Materials 05, n.º 01 (enero de 1996): 109–32. http://dx.doi.org/10.1142/s0218863596000118.
Texto completoLi, Chen, Changqin Ding, Minghe Li, Jiayue Rong, Hilary Florian y Garth Simpson. "Depth-of-field extension in optical imaging for rapid crystal screening". Acta Crystallographica Section D Structural Biology 77, n.º 4 (30 de marzo de 2021): 463–70. http://dx.doi.org/10.1107/s2059798321000097.
Texto completoReshak, A. H. y S. Auluck. "The influence of oxygen vacancies on the linear and nonlinear optical properties of Pb7O(OH)3(CO3)3(BO3)". RSC Advances 7, n.º 24 (2017): 14752–60. http://dx.doi.org/10.1039/c7ra00012j.
Texto completoLi, Donghai, Matthias Nuss, Sebastian Goetz, Verena Kolb, Jens Pflaum, Chiara Trovatello, Giulio Cerullo y Tobias Brixner. "Spatially resolved coherent 2D fluorescence spectroscopy within a high-NA microscope". EPJ Web of Conferences 205 (2019): 03014. http://dx.doi.org/10.1051/epjconf/201920503014.
Texto completoWu, Jieyun, Wen Wang, Nan Wang, Juan He, Guowei Deng, Zhonghui Li, Xiaoling Zhang, Hongyan Xiao y Kaixin Chen. "Structure–property analysis of julolidine-based nonlinear optical chromophores for the optimization of microscopic and macroscopic nonlinearity". Physical Chemistry Chemical Physics 20, n.º 36 (2018): 23606–15. http://dx.doi.org/10.1039/c8cp04470h.
Texto completoMalagoli, M. y R. W. Munn. "Microscopic calculation of the third-order nonlinear optical susceptibility of DEANST crystal". Journal of Chemical Physics 107, n.º 19 (15 de noviembre de 1997): 7926–33. http://dx.doi.org/10.1063/1.475106.
Texto completoTSUKIOKA, MASAYUKI, TETSUROU FUJIMOTO y SADAO TSUTSUMI. "OPTICAL SHG EFFECT OF STOICHIOMETRIC Ba4Na2Nb10O30 (BNN), Gd-DOPED BNN, AND Nd-DOPED BNN". Modern Physics Letters B 08, n.º 13 (10 de junio de 1994): 785–98. http://dx.doi.org/10.1142/s0217984994000790.
Texto completoUsha, V., R. Vettumperumal, S. Kalyanaraman y R. Thangavel. "Analysis of Linear and Nonlinear Optical Properties of NiO Nanoparticles by Sol–Gel Method". International Journal of Nanoscience 17, n.º 05 (octubre de 2018): 1850003. http://dx.doi.org/10.1142/s0219581x18500035.
Texto completoRyazantsev, Nikolay, Alexander Nosach y Anton Ryazantsev. "ROCKS – SEGNETOELASTICS". JOURNAL of Donetsk mining institute, n.º 2 (2020): 72–82. http://dx.doi.org/10.31474/1999-981x-2020-2-72-82.
Texto completoHatano y Kawata. "Applicability of deconvolution and nonlinear optimization for reconstructing optical images from near-field optical microscope images". Journal of Microscopy 194, n.º 2-3 (mayo de 1999): 230–34. http://dx.doi.org/10.1046/j.1365-2818.1999.00564.x.
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