Quantum reservoir computing in bosonic networks
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Miguel C. Soriano | M. C. Soriano | Roberta Zambrini | Gian Luca Giorgi | Johannes Nokkala | Pere Mujal | Rodrigo Martinez-Peña | Jorge García-Beni | Pere Mujal | R. Zambrini | G. Giorgi | J. Nokkala | Rodrigo Martínez-Peña | Jorge García‐Beni | R. Martínez-Peña
[1] Simone Severini,et al. Quantum machine learning: a classical perspective , 2017, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[2] Leon O. Chua,et al. Fading memory and the problem of approximating nonlinear operators with volterra series , 1985 .
[3] Marvin Minsky,et al. Perceptrons: An Introduction to Computational Geometry , 1969 .
[4] Steve B. Furber,et al. The SpiNNaker Project , 2014, Proceedings of the IEEE.
[5] Jaideep Pathak,et al. Model-Free Prediction of Large Spatiotemporally Chaotic Systems from Data: A Reservoir Computing Approach. , 2018, Physical review letters.
[6] G. Ribeill,et al. Nonlinear input transformations are ubiquitous in quantum reservoir computing , 2021, Neuromorph. Comput. Eng..
[7] Paul R. Prucnal,et al. Photonic Reservoir Computing , 2017 .
[8] Designing a NISQ reservoir with maximal memory capacity for volatility forecasting , 2020, 2004.08240.
[9] Hübner,et al. Dimensions and entropies of chaotic intensity pulsations in a single-mode far-infrared NH3 laser. , 1989, Physical review. A, General physics.
[10] Andrzej Opala,et al. Quantum reservoir processing , 2018, npj Quantum Information.
[11] Tomasz Paterek,et al. Creating and concentrating quantum resource states in noisy environments using a quantum neural network , 2021, Neural Networks.
[12] Tomasz Paterek,et al. Quantum Neuromorphic Platform for Quantum State Preparation. , 2019, Physical review letters.
[13] Tao Li,et al. Information processing via physical soft body , 2015, Scientific Reports.
[14] Lu-Ming Duan,et al. Machine learning meets quantum physics , 2019, Physics Today.
[15] H. Nurdin,et al. Temporal Information Processing on Noisy Quantum Computers , 2020, Physical Review Applied.
[16] Henry Markram,et al. On the computational power of circuits of spiking neurons , 2004, J. Comput. Syst. Sci..
[17] V. Eguíluz,et al. Unveiling noiseless clusters in complex quantum networks , 2018, npj Quantum Information.
[18] H.-S. Philip Wong,et al. In-memory computing with resistive switching devices , 2018, Nature Electronics.
[19] Ievgeniia Oshurko. Quantum Machine Learning , 2020, Quantum Computing.
[20] Nicolas Treps,et al. Reconfigurable optical implementation of quantum complex networks , 2017, 1708.08726.
[21] Warit Asavanant,et al. Generation of time-domain-multiplexed two-dimensional cluster state , 2019, Science.
[22] F ROSENBLATT,et al. The perceptron: a probabilistic model for information storage and organization in the brain. , 1958, Psychological review.
[23] Chrisantha Fernando,et al. Pattern Recognition in a Bucket , 2003, ECAL.
[24] Hans-J. Briegel,et al. Machine learning \& artificial intelligence in the quantum domain , 2017, ArXiv.
[25] Gerasimos Angelatos,et al. Reservoir Computing Approach to Quantum State Measurement , 2020, Physical Review X.
[26] L. C. G. Govia,et al. Quantum reservoir computing with a single nonlinear oscillator , 2020, Physical Review Research.
[27] Jyrki Piilo,et al. Complex quantum networks as structured environments: engineering and probing , 2015, Scientific Reports.
[28] J. I. Cirac,et al. Quantum computing and simulation , 2020, Nanophotonics.
[29] Miguel C. Soriano,et al. Gaussian states of continuous-variable quantum systems provide universal and versatile reservoir computing , 2021, Communications Physics.
[30] Miguel C. Soriano,et al. Opportunities in Quantum Reservoir Computing and Extreme Learning Machines , 2021, Advanced Quantum Technologies.
[31] Rodrigo Alvarez-Icaza,et al. Neurogrid: A Mixed-Analog-Digital Multichip System for Large-Scale Neural Simulations , 2014, Proceedings of the IEEE.
[32] Seth Lloyd,et al. Gaussian quantum information , 2011, 1110.3234.
[33] Jiayin Chen,et al. Learning nonlinear input–output maps with dissipative quantum systems , 2019, Quantum Information Processing.
[34] Giacomo Indiveri,et al. Memory and Information Processing in Neuromorphic Systems , 2015, Proceedings of the IEEE.
[35] Kohei Nakajima,et al. Learning Temporal Quantum Tomography , 2021, Physical review letters.
[36] Juan-Pablo Ortega,et al. Echo state networks are universal , 2018, Neural Networks.
[37] A. S. Weigend,et al. Results of the time series prediction competition at the Santa Fe Institute , 1993, IEEE International Conference on Neural Networks.
[38] Andrew S. Cassidy,et al. Convolutional networks for fast, energy-efficient neuromorphic computing , 2016, Proceedings of the National Academy of Sciences.
[39] Emilio Hernández-García,et al. Synchronization, quantum correlations and entanglement in oscillator networks , 2013, Scientific Reports.
[40] Jing Peng,et al. An Efficient Gradient-Based Algorithm for On-Line Training of Recurrent Network Trajectories , 1990, Neural Computation.
[41] Julie Grollier,et al. Quantum neuromorphic computing , 2020 .
[42] Y. Cai,et al. Multimode entanglement in reconfigurable graph states using optical frequency combs , 2017, Nature Communications.
[43] C. Wright,et al. Beyond von‐Neumann Computing with Nanoscale Phase‐Change Memory Devices , 2013 .
[44] John Preskill,et al. Quantum Computing in the NISQ era and beyond , 2018, Quantum.
[45] Herbert Jaeger,et al. Towards a generalized theory comprising digital, neuromorphic and unconventional computing , 2021, Neuromorph. Comput. Eng..
[46] Andrzej Opala,et al. Reconstructing Quantum States With Quantum Reservoir Networks , 2020, IEEE Transactions on Neural Networks and Learning Systems.
[47] George Cybenko,et al. Approximation by superpositions of a sigmoidal function , 1989, Math. Control. Signals Syst..
[48] Don Monroe,et al. Neuromorphic computing gets ready for the (really) big time , 2014, CACM.
[49] L. Appeltant,et al. Information processing using a single dynamical node as complex system , 2011, Nature communications.
[50] M. C. Soriano,et al. Information Processing Capacity of Spin-Based Quantum Reservoir Computing Systems , 2020, Cognitive Computation.
[51] Daniel Brunner,et al. Parallel photonic information processing at gigabyte per second data rates using transient states , 2013, Nature Communications.
[52] Kohei Nakajima,et al. Physical reservoir computing—an introductory perspective , 2020, Japanese Journal of Applied Physics.
[53] Michael I. Jordan,et al. Machine learning: Trends, perspectives, and prospects , 2015, Science.
[54] Toshiyuki Yamane,et al. Recent Advances in Physical Reservoir Computing: A Review , 2018, Neural Networks.
[55] Damien Querlioz,et al. Neuromorphic computing with nanoscale spintronic oscillators , 2017, Nature.
[56] Damien Querlioz,et al. Physics for neuromorphic computing , 2020, Nature Reviews Physics.
[57] Mahadev Satyanarayanan,et al. The Emergence of Edge Computing , 2017, Computer.
[58] Jean-Pierre Martens,et al. Large Vocabulary Continuous Speech Recognition With Reservoir-Based Acoustic Models , 2014, IEEE Signal Processing Letters.
[59] Yuya O. Nakagawa,et al. Predicting excited states from ground state wavefunction by supervised quantum machine learning , 2020, Mach. Learn. Sci. Technol..
[60] Emmanuel Flurin,et al. Using a Recurrent Neural Network to Reconstruct Quantum Dynamics of a Superconducting Qubit from Physical Observations , 2018, Physical Review X.
[61] W. Singer,et al. Distributed Fading Memory for Stimulus Properties in the Primary Visual Cortex , 2009, PLoS biology.
[62] Olivier Pfister,et al. Experimental realization of multipartite entanglement of 60 modes of a quantum optical frequency comb. , 2013, Physical review letters.
[63] Harald Haas,et al. Harnessing Nonlinearity: Predicting Chaotic Systems and Saving Energy in Wireless Communication , 2004, Science.
[64] Alicia J. Kollár,et al. Hyperbolic lattices in circuit quantum electrodynamics , 2018, Nature.
[65] Kurt Hornik,et al. Multilayer feedforward networks are universal approximators , 1989, Neural Networks.
[66] Demis Hassabis,et al. Mastering the game of Go without human knowledge , 2017, Nature.
[67] Weisong Shi,et al. Edge Computing: Vision and Challenges , 2016, IEEE Internet of Things Journal.
[68] Guigang Zhang,et al. Deep Learning , 2016, Int. J. Semantic Comput..
[69] Ru Huang,et al. A comprehensive review on emerging artificial neuromorphic devices , 2020, Applied Physics Reviews.
[70] Naftali Tishby,et al. Machine learning and the physical sciences , 2019, Reviews of Modern Physics.