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Quantum error correction ramp
Quantum error correction ramp









quantum error correction ramp

IEEE Trans Inf Theory 54(12):5705–5718įletcher AS, Shor PW, Win MZ (2007) Optimum quantum error recovery using semidefinite programming. Phys Rev A 81:062342įletcher AS, Shor PW, Win MZ (2008) Channel-adapted quantum error correction for the amplitude damping channel. Ng HK, Mandayam P (2010) Simple approach to approximate quantum error correction based on the transpose channel. Leung DW, Nielsen MA, Chuang IL, Yamamoto Y (1997) Approximate quantum error correction can lead to better codes. Raussendorf R, Harrington J (2007) Fault-tolerant quantum computation with high threshold in two dimensions.

quantum error correction ramp

QUANTUM ERROR CORRECTION RAMP MOD

Rev Mod Phys 87(2):307īombín H (2013) An introduction to topological quantum codes. Terhal BM (2015) Quantum error correction for quantum memories. California Institute of Technology, California Gottesman D (1997) Stabilizer codes and quantum error correction. Nielsen MA, Chuang IL (2000) Quantum computation and quantum information. Schumacher B, Nielsen MA (1996) Quantum data processing and error correction. Knill E, Laflamme R (1997) Theory of quantum error-correcting codes. Wootters WK, Zurek WH (1982) A single quantum cannot be cloned. Steane AM (1996) Error correcting codes in quantum theory. Ĭalderbank AR, Shor PW (1996) Good quantum error-correcting codes exist. Shor PW (1995) Scheme for reducing decoherence in quantum computer memory. Lidar DA, Brun TA (2013) Quantum error correction. Preskill J (2018) Quantum computing in the nisq era and beyond.

quantum error correction ramp

Zhong H-S, Deng Y-H, Qin J, Wang H, Chen M-C, Peng L-C, Luo Y-H, Wu D, Gong S-Q, Su H et al (2021) Phase-programmable gaussian boson sampling using stimulated squeezed light. Pick up skills that will be useful in a variety of places, and afford yourself the luxury of choice.Arute F, Arya K, Babbush R, Bacon D, Bardin JC, Barends R, Biswas R, Boixo S, Brandao FG, Buell DA et al (2019) Quantum supremacy using a programmable superconducting processor. I encourage you to study Quantum Computing in college (or grad school), but don't box yourself into a career in the field. What I'm trying to say is, don't put all your eggs in one basket. But it might be the space cooling down a lot and going back towards heavy R&D at a few major players with massive layoffs, or worse. real customers, not trials or contrived proof of concepts). Hopefully the answer is more qubits, better coherence, and adoption for real use cases (e.g. So no one can predict what might happen in 6-10 years. It can also make it more difficult for them to get further funding in the future. In fact, there is some reason for concern- lots of companies are doing SPAC mergers to go public and get additional funding, which dodges a great deal of regulatory oversight. However, that is not guaranteed to continue. There is lots of investment in and funding for QC right now, and lots of start ups working in the space. I'm working in it and love it, and the pay is fine (plenty of jobs with 6 figure salaries). Is that a specialization within a major like Computer Science or Physics, or a stand alone major? Because something to understand is that QC is a nascent industry.











Quantum error correction ramp