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A computational nanophotonic design library for gradient-based optimization called SPINS is presented.
Learning representations by back-propagating errors
David E Rumelhart, Geoffrey E Hinton, Ronald J Williams, et al · 1988
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A petrov-galerkin type method for solving axk= b, where a is symmetric complex
Henk A van der Vorst and Jan BM Melissen · 1990
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A systematic optimum design of waveguide-to-microstrip transition
Hong-bae Lee and Tatsuo Itoh · 1997
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Algorithm 832: Umfpack v4. 3—an unsymmetric-pattern multifrontal method
Timothy A Davis · 2004
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Convex optimization
Stephen Boyd and Lieven Vandenberghe · 2004
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Sensitivity analysis with the fdtd method on structured grids
Natalia K Nikolova, Helen W Tam, and Mohamed H Bakr · 2004
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An overview of superlu: Algorithms, implementation, and user interface
Xiaoye S Li · 2005
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Improving accuracy by sub-pixel smoothing in fdtd
A Farjadpour, David Roundy, Alejandro Rodriguez, M Ibanescu, Peter Bermel, JD Joannopoulos, Steven G Johnson, and GW Burr · 2006
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Numerical optimization
Jorge Nocedal and Stephen Wright · 2006
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A tutorial on spectral clustering
Ulrike Von Luxburg · 2007
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Advances in iterative methods and preconditioners for the helmholtz equation
Yogi A Erlangga · 2008
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Manufacturing tolerant topology optimization
Ole Sigmund · 2009
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Robust topology optimization of photonic crystal waveguides with tailored dispersion properties
Fengwen Wang, Jakob S Jensen, and Ole Sigmund · 2011
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On projection methods, convergence and robust formulations in topology optimization
Fengwen Wang, Boyan Stefanov Lazarov, and Ole Sigmund · 2011
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Scikit-learn: Machine learning in Python
F. Pedregosa, G. Varoquaux, A. Gramfort, V. Michel, B. Thirion, O. Grisel, M. Blondel, P. Prettenhofer, R. Weiss, V. Dubourg, J. Vanderplas, A. Passos, D. Cournapeau, M. Brucher, M. Perrot, and E. Duchesnay · 2011
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Choice of the perfectly matched layer boundary condition for frequency-domain Maxwell’s equations solvers
Wonseok Shin and Shanhui Fan · 2012
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A review of head-mounted displays (hmd) technologies and applications for consumer electronics
Bernard Kress and Thad Starner · 2013
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Simulation of phenomena characterized by partial differential equations, US20140207426A1, Jan. 2013
Wonseok Shin and Shanhui Fan · 2013
Cited alongside, same era.
Formulation for scalable optimization of microcavities via the frequency-averaged local density of states
Xiangdong Liang and Steven G Johnson · 2013
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Inverse design in nanophotonics
Sean Molesky, Zin Lin, Alexander Y Piggott, Weiliang Jin, Jelena Vucković, and Alejandro W Rodriguez · 2018
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Stanford OTL Disclosure S18-012
Inverse design software for nanophotonic structures - spins, 2018 · 2018
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Fully-automated optimization of grating couplers
Logan Su, Rahul Trivedi, Neil V Sapra, Alexander Y Piggott, Dries Vercruysse, and Jelena Vučković · 2018
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Adjoint method and inverse design for nonlinear nanophotonic devices
Tyler W Hughes, Momchil Minkov, Ian AD Williamson, and Shanhui Fan · 2018
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Computational bounds for photonic inverse design
Guillermo Angeris, Jelena Vuckovic, and Stephen Boyd · 2018
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Leveraging continuous material averaging for inverse electromagnetic design
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Nanophotonic computational design
Jesse Lu and Jelena Vučković · 2013
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Single-chip microprocessor that communicates directly using light
Chen Sun, Mark T Wade, Yunsup Lee, Jason S Orcutt, Luca Alloatti, Michael S Georgas, Andrew S Waterman, Jeffrey M Shainline, Rimas R Avizienis, Sen Lin, et al · 2015
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TensorFlow: Large-scale machine learning on heterogeneous systems, 2015
Martín Abadi, Ashish Agarwal, Paul Barham, Eugene Brevdo, Zhifeng Chen, Craig Citro, Greg S. Corrado, Andy Davis, Jeffrey Dean, Matthieu Devin, Sanjay Ghemawat, Ian Goodfellow, Andrew Harp, Geoffrey Irving, Michael Isard, Yangqing Jia, Rafal Jozefowicz, Lukasz Kaiser, Manjunath Kudlur, Josh Levenberg, Dandelion Mané, Rajat Monga, Sherry Moore, Derek Murray, Chris Olah, Mike Schuster, Jonathon Shlens, Benoit Steiner, Ilya Sutskever, Kunal Talwar, Paul Tucker, Vincent Vanhoucke, Vijay Vasudevan, Fernanda Viégas, Oriol Vinyals, Pete Warden, Martin Wattenberg, Martin Wicke, Yuan Yu, and Xiaoqiang Zheng · 2015
Cited alongside, same era.
Minimum length scale in topology optimization by geometric constraints
Mingdong Zhou, Boyan S Lazarov, Fengwen Wang, and Ole Sigmund · 2015
Cited alongside, same era.
Active nanophotonics: Inverse Design and strained germanium light emitters
Jan Petykiewicz · 2016
Cited alongside, same era.
Cavity-enhanced second-harmonic generation via nonlinear-overlap optimization
Zin Lin, Xiangdong Liang, Marko Lončar, Steven G Johnson, and Alejandro W Rodriguez · 2016
Cited alongside, same era.
Deep learning with coherent nanophotonic circuits
Yichen Shen, Nicholas C Harris, Scott Skirlo, Mihika Prabhu, Tom Baehr-Jones, Michael Hochberg, Xin Sun, Shijie Zhao, Hugo Larochelle, Dirk Englund, et al · 2017
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Andrew Michaels and Eli Yablonovitch · 2018
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Philipp-Immanuel Schneider, Xavier Garcia Santiago, Victor Soltwisch, Martin Hammerschmidt, Sven Burger, and Carsten Rockstuhl · 2018
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https://github.com/stanfordnqp/spins-b , 2019
Spins-b · 2019
Closest in time.
Inverse-designed diamond photonics
Constantin Dory, Dries Vercruysse, Ki Youl Yang, Neil V Sapra, Alison E Rugar, Shuo Sun, Daniil M Lukin, Alexander Y Piggott, Jingyuan L Zhang, Marina Radulaski, Konstantinos G. Lagoudakis, Logan Su, and Jelena Vučković · 2019
Closest in time.
Analytical level set fabrication constraints for inverse design
Dries Vercruysse, Neil V Sapra, Logan Su, Rahul Trivedi, and Jelena Vučković · 2019
Closest in time.
Ki Youl Yang, Jinhie Skarda, Michele Cotrufo, Avik Dutt, Geun Ho Ahn, Dries Vercruysse, Shanhui Fan, Andrea Alù, and Jelena Vučković · 2019
Closest in time.
On-chip integrated laser-driven particle accelerator
Neil V Sapra, Ki Youl Yang, Dries Vercruysse, Kenneth J Leedle, Dylan S Black, R Joel England, Logan Su, Yu Miao, Olav Solgaard, Robert L Byer, et al · 2019
Closest in time.
Inverse design and demonstration of broadband grating couplers
Neil V Sapra, Dries Vercruysse, Logan Su, Ki Youl Yang, Jinhie Skarda, Alexander Y Piggott, and Jelena Vučković · 2019
Closest in time.
Fundamental limits to near-field optical response over any bandwidth
Hyungki Shim, Lingling Fan, Steven G Johnson, and Owen D Miller · 2019
Closest in time.