Zamanda sonlu farklar yöntemi (Turkish Wikipedia)

Analysis of information sources in references of the Wikipedia article "Zamanda sonlu farklar yöntemi" in Turkish language version.

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  • Piket-May, M.; Taflove, A.; Baron, J. (1994). "FD-TD modeling of digital signal propagation in 3-D circuits with passive and active loads". IEEE Transactions on Microwave Theory and Techniques (İngilizce). 42 (8): 1514-1523. doi:10.1109/22.297814. 
  • Taflove, A.; Brodwin, M. E. (1975). "Numerical solution of steady-state electromagnetic scattering problems using the time-dependent Maxwell's equations" (PDF). IEEE Transactions on Microwave Theory and Techniques (İngilizce). 23 (8): 623-630. Bibcode:1975ITMTT..23..623T. doi:10.1109/TMTT.1975.1128640. 26 Ocak 2021 tarihinde kaynağından arşivlendi (PDF). Erişim tarihi: 19 Haziran 2020. 
  • Pereda, A.; Vielva, L. A.; Vegas, A.; Prieto, A. (2001). "Analyzing the stability of the FDTD technique by combining the von Neumann method with the Routh-Hurwitz criterion". IEEE Transactions on Microwave Theory and Techniques (İngilizce). 49 (2): 623-630. doi:10.1109/22.903100. 
  • Zhen, Fenghua; Chen, Zhizhang; Zhang, Jiazong (1999). Toward the development of a three-dimensional unconditionally stable finite-difference time-domain method. IEEE Transactions on Microwave Theory and Techniques. 47. ss. 2003-2007. doi:10.1109/22.795075. 
  • Zhen, Fenghua; Chen, Zhizhang; Zhang, Jiazong (2000). Toward the development of a three-dimensional unconditionally stable finite-difference time-domain method. IEEE Transactions on Microwave Theory and Techniques. 48. ss. 1550-1558. doi:10.1109/22.869007. 
  • Liu, Q. H. (1998). "The PSTD algorithm: A time‐domain method requiring only two cells per wavelength". Microwave and Optical Technology Letters (İngilizce). 15 (3): 158-165. doi:10.1002/(SICI)1098-2760(19970620)15:3<158::AID-MOP11>3.0.CO;2-3. 
  • Kelley, D.F.; Luebbers, R.J. (1996). "Piecewise linear recursive convolution for dispersive media using FDTD". IEEE Transactions on Antennas and Propagation (İngilizce). 44 (6): 792-797. doi:10.1109/8.509882. 
  • Namiki, T. (1981). "A new FDTD algorithm based on alternating-direction implicit method". IEEE Trans. Electromagn. Compat. (İngilizce). 23 (4): 377-382. doi:10.1109/TEMC.1981.303970. 
  • Berenger, J. (1994). "A perfectly matched layer for the absorption of electromagnetic waves". Journal of Computational Physics (İngilizce). 114 (2): 185-200. Bibcode:1994JCoPh.114..185B. doi:10.1006/jcph.1994.1159. 
  • Sacks, Z. S.; Kingsland, D. M.; Lee, R.; Lee, J. F. (1995). "A perfectly matched anisotropic absorber for use as an absorbing boundary condition". IEEE Transactions on Antennas and Propagation (İngilizce). 43 (12): 1460-1463. Bibcode:1995ITAP...43.1460S. doi:10.1109/8.477075. 
  • Gedney, S. D. (1996). "An anisotropic perfectly matched layer absorbing media for the truncation of FDTD lattices". IEEE Transactions on Antennas and Propagation (İngilizce). 44 (12): 1630-1639. Bibcode:1996ITAP...44.1630G. doi:10.1109/8.546249. 
  • Chew, W. C.; Weedon, W. H. (1994). "A 3d perfectly matched medium from modified Maxwell's equations with stretched coordinates". Microwave Optical Tech. Letters (İngilizce). 7 (13): 599-604. Bibcode:1994MiOTL...7..599C. doi:10.1002/mop.4650071304. 
  • Teixeira, F. L.; Chew, W. C. (1998). "General closed-form PML constitutive tensors to match arbitrary bianisotropic and dispersive linear media". IEEE Microwave and Guided Wave Letters (İngilizce). 8 (6): 223-225. doi:10.1109/75.678571. 
  • Cummer, Steven A. (2004). "Perfectly matched layer behavior in negative refractive index materials". IEEE Ant. Wireless Prop. Lett (İngilizce). 3 sayfalar =172-175. doi:10.1109/lawp.2004.833710. 
  • Dong, X. T.; Rao, X. S.; Gan, Y. B.; Guo, B.; Yin, W. Y. (2004). "Perfectly matched layer-absorbing boundary condition for left-handed materials". IEEE Microwave Wireless Components Lett. (İngilizce). 14: 301-333. doi:10.1109/lmwc.2004.827104. 
  • Loh, Po-Ru; Oskooi, Ardavan F.; Ibanescu, Mihai; Skorobogatiy, Maksim; Johnson, Steven G. (2009). "Fundamental relation between phase and group velocity, and application to the failure of perfectly matched layers in backward-wave structures". Phys. Rev. E (İngilizce). 79 (6): 065601. doi:10.1103/PhysRevE.79.065601. 
  • Berenger, J. (1999). "Evanescent Waves in PML's: Origin of the Numerical Reflection in Wave-Structure Interaction Problems". IEEE Transactions on Antennas and Propagation (İngilizce). 47 (10): 1497-1503. doi:10.1109/8.805891. 
  • Kuzuoğlu, M.; Mittra, R. (1996). "Frequency Dependence of the Constitutive Parameters of Causal Perfectly Matched Anisotropic Absorber". IEEE Microwave and Guided Wave Letters (İngilizce). 6 (12): 447-449. doi:10.1109/75.544545. 
  • Roden, J. Alan; Gedney, Stephen D. (2000). "Convolution PML (CPML): An efficient FDTD implementation of the CFS–PML for arbitrary media". Microwave and Optical Technology Letters (İngilizce). 27 (5): 334-339. doi:10.1002/1098-2760(20001205)27:5<334::AID-MOP14>3.0.CO;2-A. 
  • Harms, P.; Mittra, R.; Ko, Wai (1994). "Implementation of the periodic boundary condition in the finite-difference time-domain algorithm for FSS structures". IEEE Transactions on Antennas and Propagation (İngilizce). 42 (9): 1317-1324. doi:10.1109/8.318653. 
  • Çapoğlu, İlker R.; Taflove, Allen; Backman, Vadim (2013). "Computation of tightly-focused laser beams in the FDTD method". Optics Express (İngilizce). 21 (1): 87-101. doi:10.1364/OE.21.000087. 
  • Çapoğlu, İlker R.; Taflove, Allen; Backman, Vadim (2013). "Generation of an incident focused light pulse in FDTD". Optics Express (İngilizce). 16 (23): 19208-19220. doi:10.1364/OE.16.019208. 
  • Shlager, K.L.; Schneider, J.B. (1996). "A selective survey of the finite-difference time-domain literature". IEEE Antennas and Propagation Magazine (İngilizce). 37 (4): 39-57. doi:10.1109/74.414731. 
  • Yee, Kane (1966). "Numerical solution of initial boundary value problems involving Maxwell's equations in isotropic media". IEEE Transactions on Antennas and Propagation (İngilizce). 14 (3): 302-307. Bibcode:1966ITAP...14..302Y. doi:10.1109/TAP.1966.1138693. 
  • Pile, David (2015). "Numerical solution". Nature Photonics (İngilizce). 9: 5-6. doi:10.1038/nphoton.2014.305. 
  • Taflove, A.; Brodwin, M. E. (1975). "Computation of the electromagnetic fields and induced temperatures within a model of the microwave-irradiated human eye" (PDF). IEEE Transactions on Microwave Theory and Techniques (İngilizce). 23 (11): 888-896. Bibcode:1975ITMTT..23..888T. doi:10.1109/TMTT.1975.1128708. 4 Mart 2016 tarihinde kaynağından arşivlendi (PDF). Erişim tarihi: 31 Aralık 2020. 
  • Holland, R. (1977). "Threde: A free-field EMP coupling and scattering code". IEEE Transactions on Nuclear Science. 24 (6): 2416-2421. Bibcode:1977ITNS...24.2416H. doi:10.1109/TNS.1977.4329229. 
  • Taflove, A.; Umashankar, K. R. (1983). "Radar cross section of general three-dimensional scatterers" (PDF). IEEE Transactions on Electromagnetic Compatibility. 25 (4): 433-440. doi:10.1109/TEMC.1983.304133. 4 Mart 2016 tarihinde kaynağından arşivlendi (PDF). Erişim tarihi: 31 Aralık 2020. 
  • Taflove, A. (1980). "Application of the finite-difference time-domain method to sinusoidal steady state electromagnetic penetration problems" (PDF). IEEE Trans. Electromagn. Compat. (İngilizce). 22 (3): 191-202. Bibcode:1980ITElC..22..191T. doi:10.1109/TEMC.1980.303879. 18 Ocak 2021 tarihinde kaynağından arşivlendi (PDF). Erişim tarihi: 19 Haziran 2020. 
  • Choi, D. H.; Hoefer, W. J. (1986). "The finite-difference time-domain method and its application to eigenvalue problems". IEEE Transactions on Microwave Theory and Techniques. 34 (12): 1464-1470. Bibcode:1986ITMTT..34.1464C. doi:10.1109/TMTT.1986.1133564. 
  • Tirkas, P. A.; Balanis, C. A. (1991). Finite-difference time-domain technique for radiation by horn antennas. IEEE Antennas and Propagation Society International Symposium Digest. 3. ss. 1750-1753. doi:10.1109/APS.1991.175196. ISBN 978-0-7803-0144-3. 
  • Kashiwa, T.; Fukai, I. (1990). "A treatment by FDTD method of dispersive characteristics associated with electronic polarization". Microwave and Optical Technology Letters. 3 (6): 203-205. doi:10.1002/mop.4650030606. 
  • Zhang, X.; Fang, J.; Mei, K. K.; Liu, Y. (1988). "Calculation of the dispersive characteristics of microstrips by the time-domain finite-difference method". IEEE Transactions on Microwave Theory and Techniques. 36 (2): 263-267. Bibcode:1988ITMTT..36..263Z. doi:10.1109/22.3514. 
  • Huang, Yingyan; Ho, Seng-Tiong (1996). "Computational model of solid-state, molecular, or atomic media for FDTD simulation based on a multi-level multi-electron system governed by Pauli exclusion and Fermi-Dirac thermalization with application to semiconductor photonics". Optics Express (İngilizce). 14 (8): 3569-3587. doi:10.1364/OE.14.003569. 
  • Chen, Hanning; McMahon, Jeffrey M.; Ratner, Mark A.; Schatz, George C. (2010). "Classical Electrodynamics Coupled to Quantum Mechanics for Calculation of Molecular Optical Properties: a RT-TDDFT/FDTD Approach". J. Phys. Chem. C (İngilizce). 114 (34): 14384-14392. doi:10.1021/jp1043392. 
  • Willis, K. J.; Ayubi-Moak, J. S.; Hagness, S. C.; Knezevic, I. (2009). "Global modeling of carrier-field dynamics in semiconductors using EMC–FDTD". Journal of Computational Electronics (İngilizce). 8. doi:10.1007/s10825-009-0280-4. 
  • Slavcheva, G. M.; Arnold, J. M.; Ziolkowski, R. W. (2004). "FDTD simulation of the nonlinear gain dynamics in active optical waveguides and semiconductor microcavities". IEEE Journal of Selected Topics in Quantum Electronics (İngilizce). 10 (5): 1052-1062. doi:10.1109/JSTQE.2004.836023. 
  • Ward, J.; Swenson, C.; Furse, C. (2005). "The impedance of a short dipole antenna in a magnetized plasma via a finite difference time domain model". IEEE Transactions on Antennas and Propagation (İngilizce). 53 (8): 2711-2718. doi:10.1109/TAP.2005.851823. 
  • Chaudhury, Bhaskar; Boeuf, Jean-Pierre (2010). "Computational Studies of Filamentary Pattern Formation in a High Power Microwave Breakdown Generated Air Plasma". IEEE Transactions on Plasma Science (İngilizce). 38 (9): 2281-2288. doi:10.1109/TPS.2010.2055893. 
  • F. Oskooi, Ardavan; Roundy, David; Ibanescu, Mihai; Bermel, Peter; Joannopoulos, J. D.; G. Johnson, Steven (2010). "Meep: A flexible free-software package for electromagnetic simulations by the FDTD method". Computer Physics Communications (İngilizce). 181 (3): 687-702. doi:10.1016/j.cpc.2009.11.008. 

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