An Exhaustive Analysis of the Characterization of Photopolymer Material (SZ2080) by Two-Photon Polymerization, Waves Moving in a Periodic Potential, and Two-Photon Absorption

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This paper presents an Exhaustive Analysis of the Characterization of Photopolymer Material (SZ2080) by Two-Photon Polymerization, and some of the modern concepts like Characterization of Photonic Crystals in Photopolymer SZ2080 by Two-Photon Polymerization, Waves Moving in a Periodic Potential, and Optical Quantum metamaterials. Two-photon polymerization for fabricating three-dimensional subdiffraction-limited structures has been discussed. Experimental and Computed Curves of line thickness (nm) vs feed rate (μm/s) have been technically analyzed. Waves moving in a Periodic Potential and Photonic Crystals have been technically discussed. In addition, Optical Quantum metamaterials have been discussed in terms of quantum coherence, and quantum dots with emphasis on cavity array metamaterial.

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Materials Science Forum (Volume 1003)

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165-172

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July 2020

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© 2020 Trans Tech Publications Ltd. All Rights Reserved

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[1] T. W. Lim, S. H. Park, and D.-Y. Yang, Microelectronic Engineering 77(2005)382- 388.

Google Scholar

[2] K.-S. Lee, R. H. Kim, D.-Y. Yang, and S. H. Park, Progress in Polymer Science 33(2008) 631-681.

Google Scholar

[3] S. Wu, J. Serbin, and M. Gu, Journal of Photochemistry and Photobiology A: Chemistry 181(2006) 1-11.

Google Scholar

[4] R.J. Narayan, C. Jin, A. Doraiswamy, I. N. Mihailescu , and M. Jelinek, Laser processing of advanced bioceramics. Adv. Eng. Materials, 7(2005)1083-1098.

DOI: 10.1002/adem.200500155

Google Scholar

[5] Two Photon Absorption – Clean Energy WIKI – Photonics Wikiorphotonicswiki.org › title=Two_Photon_A.

Google Scholar

[6] Tian Yinan, Kwon Hyukjoon, Yung C Shin. and King Galen B., Fabrication and Characterization of Photonic Crystals in Photopolymer SZ2080 by Two-Photon Polymerization Using a Femtosecond Laser, J. Micro Nano-Manuf 2 (2014) 034501 (5 pages).

DOI: 10.1115/1.4027737

Google Scholar

[7] https://www.tf.uni-kiel.de/matwis/amat/iss/kap_7/advanced/a7_1_1.html.

Google Scholar

[8] G. Weick, C. Woollacott, W,L. Barnes, O. Hess, and E. Mariani., Dirac-like Plasmons in Honeycomb. Lattices of Metallic Nanoparticles. Phys Rev Lett. 110 (2013)106801.

DOI: 10.1103/physrevlett.110.106801

Google Scholar

[9] G. Weick and E. Mariani. Tunable plasmon polaritons in arrays of interacting metallic nanoparticles, Eur Phys J B., 88 (2015) 7.

DOI: 10.1140/epjb/e2014-50658-2

Google Scholar

[10] T.J. Sturges, C. Woollacott, G. Weick, and E. Mariani. Dirac plasmons in bipartite lattices of metallic nanoparticles,2D Mater., 2 (2015) 014008.

DOI: 10.1088/2053-1583/2/1/014008

Google Scholar

[11] James Q. Quach, Chun-Hsu Su, and Andrew M. Martin, Greentree Andrew D. and Hollenberg Lloyd C. L., Reconfigurable quantum metamaterials, Phys Rev A,80 (2009) 063838.

Google Scholar

[12] Kamal Nain Chopra, Mathematical Designing and Short Qualitative Review of Unconventional Lasers based on Photonic Crystals, LAJPE 8 (2014) 4307-1 - 4307-7.

Google Scholar

[13] Kamal Nain Chopra, A Detailed Overview and Technical Analysis of the Photonic Crystals and their Characterization with emphasis on Computation and Designing of Photonic Band Structure, Atti Fond G. Ronchi, 73 (2018) 177- 215.

Google Scholar

[14] Kamal Nain Chopra, Designing and Technical Analysis of the Use of Combination of PhCs based Hydrogel with an Enzyme Hydrogel as Biosensors, The 11th International Symposium on Photonics and Optoelectronics SOPO 2018, Kunming, China, TAYLOR and FRANCIS PUBL. GROUP (Oxfordshire, U.K.) 89-96.

DOI: 10.1201/9780429447082-13

Google Scholar

[15] Ritu Walia and Kamal Nain Chopra, Designing and Numerical Modeling of Surface Plasmon Resonance Temperature Sensors based on Photonic Crystal Fibers with emphasis on Plasmonics and Nanophotonics Optical Quantum Metamaterials, Proceedings of the 12th International Symposium on Photonics and Optoelectronics SOPO (2019) In Press, Xian, CHINA, TAYLOR and FRANCIS PUBL. GROUP (Oxfordshire, U.K.).

DOI: 10.1201/9780429283628-29

Google Scholar

[16] Ritu Walia and Kamal Nain Chopra, Technical Analysis and Overview of the Application of Artificial Dielectric Materials in the form of Photonic crystal cavity with resonance in Dirac leaky-wave Antennas, Spring International Conference on Material Sciences and Technology (MST-S), CHINA, Wuhan University April 22-24, 2019; Materials Science Forum, Trans Tech Publications Ltd., Zurich, SWITZERLAND (In Press 2019).

DOI: 10.4028/www.scientific.net/msf.960.231

Google Scholar

[17] Ritu Walia and Kamal Nain Chopra, Technical Analysis and Overview of the Application of Artificial Dielectric Materials in the form of Photonic crystal cavity with resonance in Dirac leaky-wave Antennas, Spring International Conference on Material Sciences and Technology (MST-S), CHINA, Wuhan University April 22-24, 2019; Materials for Modern Technologies V ,Materials Science Forum, Trans Tech Publications Ltd., Zurich, SWITZERLAND (2019) 231-237.

DOI: 10.4028/www.scientific.net/msf.960.231

Google Scholar