Keterlibatan kuantum
Penampilan
Keterlibatan kuantum ialah fenomena yang berlaku apabila sekumpulan zarah dijana, saling tindak, atau berkongsi kehampiran ruang dengan cara yang keadaan kuantum setiap zarah kumpulan tidak boleh dihuraikan bebas bagi keadaan yang lain, termasuk zarah yang terpisah oleh jarak yang besar. Topik keterlibatan kuantum di hati ketidaksamaan antara fizik klasik dan kuantum: keterlibatan ialah ciri utama mekanik kuantum yang tidak ada dalam mekanik klasik.[1]
Rujukan
[sunting | sunting sumber]- ^ Overbye, Dennis (10 Oktober 2022). "Black Holes May Hide a Mind-Bending Secret About Our Universe - Take gravity, add quantum mechanics, stir. What do you get? Just maybe, a holographic cosmos". The New York Times. Dicapai pada 10 Oktober 2022.
Bacaan lanjut
[sunting | sunting sumber]- Albert, David Z.; Galchen, Rivka (2009). "Was Einstein Wrong?: A Quantum Threat to Special Relativity". Scientific American. 300 (3): 32–39. doi:10.1038/scientificamerican0309-32. PMID 19253771.
- Bengtsson I; Życzkowski K (2006). "Geometry of Quantum States". An Introduction to Quantum Entanglement. Cambridge: Cambridge University Press. second, revised edition (2017)
- Bub, Jeffrey (2019). "Quantum Entanglement and Information". Stanford Encyclopedia of Philosophy. Stanford, California: Stanford University.
- Cramer JG (2015). The Quantum Handshake: Entanglement, Nonlocality and Transactions. Springer Verlag. ISBN 978-3-319-24642-0.
- Duarte FJ (2019). Fundamentals of Quantum Entanglement. Bristol, UK: Institute of Physics. ISBN 978-0-7503-2226-3.
- Gühne O, Tóth G (2009). "Entanglement detection". Physics Reports. 474 (1–6): 1–75. arXiv:0811.2803. Bibcode:2009PhR...474....1G. doi:10.1016/j.physrep.2009.02.004. S2CID 119288569.
- Bhaskara VS, Panigrahi PK (2017). "Generalized concurrence measure for faithful quantification of multiparticle pure state entanglement using Lagrange's identity and wedge product". Quantum Information Processing. 16 (5): 118. arXiv:1607.00164. Bibcode:2017QuIP...16..118B. doi:10.1007/s11128-017-1568-0. S2CID 43754114.
- Swain SN, Bhaskara VS, Panigrahi PK (2022). "Generalized entanglement measure for continuous-variable systems". Phys. Rev. A. 105 (5): 052441. arXiv:1706.01448. Bibcode:2022PhRvA.105e2441S. doi:10.1103/PhysRevA.105.052441. S2CID 239885759 Check
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value (bantuan). - Jaeger G (2009). Entanglement, Information, and the Interpretation of Quantum Mechanics. Heildelberg: Springer. ISBN 978-3-540-92127-1.
- Steward EG (2008). Quantum Mechanics: Its Early Development and the Road to Entanglement. Imperial College Press. ISBN 978-1-86094-978-4.
Pautan luar
[sunting | sunting sumber]Wikipetik mempunyai koleksi petikan mengenai: Keterlibatan kuantum |
- Einstein Got It Wrong, Can You Do Better?
- How Quantum Entanglement Works
- Explanatory video by Scientific American magazine
- Hanson Lab – Loophole-free Bell test ‘Spooky action at a distance’, no cheating.
- Two Diamonds Linked by Strange Quantum Entanglement
- Entanglement experiment with photon pairs – interactive
- Scientists demonstrate quantum nature of entanglement swapping
- Quantum Entanglement and Bell's Theorem at MathPages
- Audio – Cain/Gay (2009) Astronomy Cast Entanglement
- Ion trapping quantum information processing
- IEEE Spectrum On-line: The trap technique
- Spooky Actions At A Distance?: Oppenheimer Lecture, Prof. David Mermin (Cornell University) Univ. California, Berkeley, 2008. Non-mathematical popular lecture on YouTube, posted Mar 2008
- "Quantum Entanglement versus Classical Correlation" (Interactive demonstration)