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This is a short overview explaining how building a large-scale, silicon-photonic quantum computer has been reduced to the creation of good sources of 3-photon entangled states (and may simplify further).
C. K. Hong, Z. Y. Ou, and L. Mandel, “Measurement of subpicosecond time intervals between two photons by interference,” Phys. Rev. Lett
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E. L. Wooten, K. M. Kissa, A. Yi-Yan, E. J. Murphy, D. A. Lafaw, P. F. Hallemeier, D. Maack, D. V. Attanasio, D. J. Fritz, G. J. McBrien, and D. E. Bossi, “A review of lithium niobate modulators for fiber-optic communications systems,” IEEE Journal of Selected Topics in Quantum Electronics
2000
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R. Raussendorf and H. J. Briegel, “A One-Way Quantum Computer,” Physical Review Letters
2001
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E. Knill, R. Laflamme, and G. J. Milburn, “A scheme for efficient quantum computation with linear optics.,” Nature
2001
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A. L. Migdall, D. Branning, S. Castelletto, and M. Ware, “Tailoring Single and Multiphoton Probabilities of a Single Photon On-Demand Source,” Physical Review A
2002
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2003
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A. Liu, R. Jones, L. Liao, D. Samara-Rubio, D. Rubin, O. Cohen, R. Nicolaescu, and M. Paniccia, “A high-speed silicon optical modulator based on a metal–oxide–semiconductor capacitor,” Nature
2004
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S. Bravyi and A. Kitaev, “Universal quantum computation with ideal Clifford gates and noisy ancillas,” Physical Review A
2005
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B. W. Reichardt and L. K. Grover, “Quantum error correction of systematic errors using a quantum search framework,” Phys. Rev. A
2005
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D. E. Browne and T. Rudolph, “Resource-efficient linear optical quantum computation,” Physical Review Letters
2005
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P. P. Rohde and T. C. Ralph, “Error models for mode mismatch in linear optics quantum computing,” Physical Review A
2006
Earlier work this paper cites.
R. Raussendorf, J. Harrington, and K. Goyal, “A fault-tolerant one-way quantum computer,” Annals of Physics
2006
Earlier work this paper cites.
M. Varnava, D. Browne, and T. Rudolph, “Loss Tolerance in One-Way Quantum Computation via Counterfactual Error Correction,” Physical Review Letters
2006
Earlier work this paper cites.
D. Gross and J. Eisert, “Novel schemes for measurement-based quantum computation,” Phys. Rev. Lett
2007
Earlier work this paper cites.
R. Raussendorf, J. Harrington, and K. Goyal, “Topological fault-tolerance in cluster state quantum computation,” New Journal of Physics
2007
Earlier work this paper cites.
K. Kieling, T. Rudolph, and J. Eisert, “Percolation, Renormalization, and Quantum Computing with Nondeterministic Gates,” Physical Review Letters
2007
Earlier work this paper cites.
P. Koonath and B. Jalali, “Multilayer 3-d photonics in silicon,” Opt. Express
2007
Earlier work this paper cites.
M. Varnava, D. E. Browne, and T. Rudolph, “Loss tolerant linear optical quantum memory by measurement-based quantum computing,” New Journal of Physics
2007
Earlier work this paper cites.
A. Politi, M. J. Cryan, J. G. Rarity, S. Yu, and J. L. O’Brien, “Silica-on-silicon waveguide quantum circuits.,” Science (New York, N.Y.)
2008
Earlier work this paper cites.
J. Schrauwen, D. V. Thourhout, and R. Baets, “Trimming of silicon ring resonator by electron beam induced compaction and strain,” Opt. Express
2008
Earlier work this paper cites.
E. Knill, D. Leibfried, R. Reichle, J. Britton, R. B. Blakestad, J. D. Jost, C. Langer, R. Ozeri, S. Seidelin, and D. J. Wineland, “Randomized benchmarking of quantum gates,” Phys. Rev. A
2008
Earlier work this paper cites.
M. Varnava, D. Browne, and T. Rudolph, “How Good Must Single Photon Sources and Detectors Be for Efficient Linear Optical Quantum Computation?,” Physical Review Letters
2008
Cited alongside, same era.
Q. Zhang, X.-H. Bao, C.-Y. Lu, X.-Q. Zhou, T. Yang, T. Rudolph, and J.-W. Pan, “Demonstration of a scheme for the generation of “event-ready” entangled photon pairs from a single-photon source,” Physical Review A
2008
Cited alongside, same era.
S. D. Barrett, S. D. Bartlett, A. C. Doherty, D. Jennings, and T. Rudolph, “Transitions in the computational power of thermal states for measurement-based quantum computation,” Phys. Rev. A
2009
Cited alongside, same era.
T. M. Stace, S. D. Barrett, and A. C. Doherty, “Thresholds for topological codes in the presence of loss,” Physical Review Letters
2009
Cited alongside, same era.
N. H. Nickerson, Y. Li, and S. C. Benjamin, “Topological quantum computing with a very noisy network and local error rates approaching one percent,” Nat Commun
2013
Later among the works it cites.
N. C. Harris, D. Grassani, A. Simbula, M. Pant, M. Galli, T. Baehr-Jones, M. Hochberg, D. Englund, D. Bajoni, and C. Galland, “Integrated source of spectrally filtered correlated photons for large-scale quantum photonic systems,” Phys. Rev. X
2014
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E. T. Campbell, “Enhanced fault-tolerant quantum computing in d d -level systems,” Phys. Rev. Lett
2014
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F. Ewert and P. van Loock, “3/4 - Efficient Bell Measurement with Passive Linear Optics and Unentangled Ancillae,” Physical Review Letters
2014
Later among the works it cites.
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B. P. Lanyon, M. Barbieri, M. P. Almeida, T. Jennewein, T. C. Ralph, K. J. Resch, G. J. Pryde, J. L. O/’Brien, A. Gilchrist, and A. G. White, “Simplifying quantum logic using higher-dimensional hilbert spaces,” Nat Phys
2009
Cited alongside, same era.
N. Lindner and T. Rudolph, “Proposal for Pulsed On-Demand Sources of Photonic Cluster State Strings,” Physical Review Letters
2009
Cited alongside, same era.
S. D. Barrett and T. M. Stace, “Fault Tolerant Quantum Computation with Very High Threshold for Loss Errors,” Physical Review Letters
2010
Cited alongside, same era.
Cambridge University Press, 2010
B. Lovett and P. Kok, Optical Quantum Information Processing · 2010
Cited alongside, same era.
K. F. Reim and et al., “Towards high-speed optical quantum memories,” Nat Photon
2010
Cited alongside, same era.
A. Laing, A. Peruzzo, A. Politi, M. R. Verde, M. Halder, T. C. Ralph, M. G. Thompson, and J. L. O’Brien, “High-fidelity operation of quantum photonic circuits,” Applied Physics Letters
2010
Cited alongside, same era.
Y. Shen, I. B. Divliansky, D. N. Basov, and S. Mookherjea, “Electric-field-driven nano-oxidation trimming of silicon microrings and interferometers,” Opt. Lett
2011
Cited alongside, same era.
W. P. Grice, “Arbitrarily complete Bell-state measurement using only linear optical elements,” Physical Review A
2011
Cited alongside, same era.
J. W. Silverstone, D. Bonneau, K. Ohira, N. Suzuki, H. Yoshida, N. Iizuka, M. Ezaki, C. M. Natarajan, M. G. Tanner, R. H. Hadfield, V. Zwiller, G. D. Marshall, J. G. Rarity, J. L. O’Brien, and M. G. Thompson, “On-chip quantum interference between silicon photon-pair sources,” Nat Photon
2014
Later among the works it cites.
N. H. Nickerson, J. F. Fitzsimons, and S. C. Benjamin, “Freely scalable quantum technologies using cells of 5-to-50 qubits with very lossy and noisy photonic links,” Phys. Rev. X
2014
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C. M. Gentry, J. M. Shainline, M. T. Wade, M. J. Stevens, S. D. Dyer, X. Zeng, F. Pavanello, T. Gerrits, S. W. Nam, R. P. Mirin, and M. A. Popović, “Quantum-correlated photon pairs generated in a commercial 45nm complementary metal-oxide semiconductor microelectronic chip,” Optica
2015
Later among the works it cites.
C. Sun, M. T. Wade, Y. Lee, J. S. Orcutt, L. Alloatti, M. S. Georgas, A. S. Waterman, J. M. Shainline, R. R. Avizienis, S. Lin, B. R. Moss, R. Kumar, F. Pavanello, A. H. Atabaki, H. M. Cook, A. J. Ou, J. C. Leu, Y.-H. Chen, K. Asanović, R. J. Ram, M. Popović, and V. M. Stojanović, “Single-chip microprocessor that communicates directly using light,” Nature
2015
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H. A. Zaidi, C. Dawson, P. van Loock, and T. Rudolph, “Near-deterministic creation of universal cluster states with probabilistic Bell measurements and three-qubit resource states,” Physical Review A
2015
Later among the works it cites.
2015
Later among the works it cites.
PhD thesis, Imperial College London, 2015
M. Gimeno-Segovia, Toward Practical Linear Optical Quantum Computing · 2015
Later among the works it cites.
M. Gimeno-Segovia, P. Shadbolt, D. E. Browne, and T. Rudolph, “From three-photon greenberger-horne-zeilinger states to ballistic universal quantum computation,” Phys. Rev. Lett
2015
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Y. Li, P. C. Humphreys, G. J. Mendoza, and S. C. Benjamin, “Resource costs for fault-tolerant linear optical quantum computing,” Phys. Rev. X
2015
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M. K. Akhlaghi, E. Schelew, and J. F. Young, “Waveguide integrated superconducting single-photon detectors implemented as near-perfect absorbers of coherent radiation,” Nature Communications
2015
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T. J. Seok, N. Quack, S. Han, and M. C. Wu, “50x50 digital silicon photonic switches with mems-actuated adiabatic couplers,” in Optical Fiber Communication Conference
2015
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K. Suzuki, G. Cong, K. Tanizawa, S.-H. Kim, K. Ikeda, S. Namiki, and H. Kawashima, “Ultra-high-extinction-ratio 2x2 silicon optical switch with variable splitter,” Opt. Express
2015
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E. Schmigdall, “Deterministic generation of a cluster state of polarization entangled single photons,” in OECS 2015
2015
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K. Azuma, K. Tamaki, and H.-K. Lo, “All-photonic quantum repeaters,” Nat Commun
2015
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A. Bolt, D. Poulin, and T. Stace, “Foliated quantum codes,” tech. rep., arxiv:1607.02579, 2016
2016
Closest in time.
D. Silver, A. Huang, C. J. Maddison, A. Guez, L. Sifre, G. van den Driessche, J. Schrittwieser, I. Antonoglou, V. Panneershelvam, M. Lanctot, S. Dieleman, D. Grewe, J. Nham, N. Kalchbrenner, I. Sutskever, T. Lillicrap, M. Leach, K. Kavukcuoglu, T. Graepel, and D. Hassabis, “Mastering the game of go with deep neural networks and tree search,” Nature
2016
Closest in time.
J. Notaros, F. Pavanello, M. T. Wade, C. Gentry, A. Atabaki, L. Alloatti, R. J. Ram, and M. Popovic, “Ultra-efficient cmos fiber-to-chip grating couplers,” in Optical Fiber Communication Conference
2016
Closest in time.