teleportation
Teleportation is the hypothetical transfer of matter or energy from one point to another without traversing the physical space between them. It is a common subject in science fiction and fantasy literature. Teleportation is often paired with time travel, being that the traveling between the two points takes an unknown period of time, sometimes being immediate. An apport is a similar phenomenon featured in parapsychology and spiritualism.
There is no known physical mechanism that would allow for teleportation. Some scientific papers and media articles describe "quantum teleportation", a scheme for quantum information transfer, which does not allow for faster-than-light communication.
Etymology
The use of the term teleport to describe the hypothetical movement of material objects between one place and another without physically traversing the distance between them has been documented as early as 1878.
American writer Charles Fort is credited with having coined the word teleportation in 1931 to describe the strange disappearances and appearances of anomalies, which he suggested may be connected. As in the earlier usage, he joined the Greek prefix tele- (meaning "remote") to the root of the Latin verb portare (meaning "to carry"). Fort's first formal use of the word occurred in the second chapter of his 1931 book Lo!:
Cultural references
Fiction
Teleportation in fiction
Teleportation is a common subject in science fiction literature, film, video games, and television. The use of matter transmitters in science fiction originated at least as early as the 19th century. An early example of scientific teleportation (as opposed to magical or spiritual teleportation) is found in the 1897 novel To Venus in Five Seconds by Fred T. Jane. Jane's protagonist is transported from a strange-machinery-containing gazebo on Earth to planet Venus – hence the title.
The earliest recorded story of a "matter transmitter" was Edward Page Mitchell's "The Man Without a Body" in 1877.
Live performance
Teleportation illusions have featured in live performances throughout history, often under the fiction of miracles, psychic phenomenon, or magic. The cups and balls trick has been performed since 3 BC and can involve balls vanishing, reappearing, teleporting and transposing (objects in two locations interchanging places). A common trick of close-up magic is the apparent teleportation of a small object, such as a marked playing card, which can involve sleight-of-hand, misdirection, and pickpocketing. Magic shows were popular entertainments at fairs in the 18th century and moved into permanent theatres in the mid-19th century. Theatres provided greater control of the environment and viewing angles for more elaborate illusions, and teleportation tricks grew in scale and ambition. To increase audience excitement, the teleportation illusion could be conducted under the theme of a predicament escape. Magic shows achieved widespread success during the Golden Age of Magic in the late 19th and early 20th centuries.
Quantum teleportation
Quantum teleportation
Quantum teleportation is distinct from regular teleportation, as it does not transfer matter from one place to another, but rather transmits the quantum information necessary to prepare a (microscopic) target system in the same quantum state as the source system. The scheme was named quantum "teleportation", because certain properties of the source system are recreated in the target system without any apparent quantum information carrier propagating between the two.
In 1993, Bennett et al proposed that a quantum state of a particle could be transferred to another distant particle, without moving the two particles at all. This is called quantum state teleportation. There are many following theoretical and experimental papers published.
In 2008, M. Hotta proposed that it may be possible to teleport energy by exploiting quantum energy fluctuations of an entangled vacuum state of a quantum field. In 2023, quantum energy teleportation was observed and recorded by Kazuki Ikeda for the first-time across microscopic distances using IBM superconducting computers that are used for quantum computing.
In 2014, researcher Ronald Hanson and colleagues from the Technical University Delft in the Netherlands, demonstrated the teleportation of information between two entangled quantumbits three metres apart.
A generalization of quantum mechanics suggests particles could be teleported from one place to another. This is called particle teleportation. With this concept, superconductivity can be viewed as the teleportation of some electrons in the superconductor and superfluidity as the teleportation of some of the atoms in the cellular tube. Further analysis shows that the teleportation time increases with the square root of mass and longer teleportation times require sustained quantum coherence. While particle teleportation may be feasible for an electron, a proton may not be feasible.
Philosophy
Philosopher Derek Parfit used teleportation in his teletransportation paradox.
See also
- 1593 transported soldier legend
- Apport (paranormal)
- Bilocation
- Materialization (paranormal)
- Philadelphia experiment
- Quantum teleportation
- Teletransportation paradox
- Wormhole
References
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- Melton, J. Gordon, J. Gordon Melton, The Encyclopedia of Religious Phenomena, limited, 2008, Visible Ink Press, Detroit, 12, –13
- Is Teleportation Possible?, Slate, 23 May 2013, 20 December 2022
- Quantum teleportation is real, but it's not what you think, Popular Science, 19 February 2019, 20 December 2022
- The Hawaiian gazette. (Honolulu , Hawaii, ) 1865–1918, October 23, 1878, Image 4, loc.gov
- 29 Jun 1878 – The Latest Wonder, nla.gov.au, 29 June 1878
- Lo!: Part I: 2, Sacred-texts.com, 20 March 2014
- Teleportation, Etymology online, 7 October 2016
- Mr. X, Lo!: A Hypertext Edition of Charles Hoy Fort's Book, Resologist.net, 20 March 2014
- Teleportation in early science fiction, The Worlds of David Darling, 4 February 2014
- Penn & Teller's Cups-and-Balls Magic Trick, Macknik, Stephen L., Scientific American Blog Network, en, 2020-04-30
- History of Magic, This French site, Magiczoom, has now closed its doors, 2006-05-15
- Steinmeyer, Jim, Hiding the Elephant, 2003, Da Capo Press
- Bouwmeester, D., etal, 1997, Experimental quantum teleportation, Nature, 390, 6660, 575–579, 10.1038/37539, 1997Natur.390..575B, 1901.11004, 4422887
- All teleportation and dense coding schemes, Werner, Reinhard F., 2001, J. Phys. A: Math. Gen., 34, 35, 7081–7094, 10.1088/0305-4470/34/35/332, quant-ph/0003070, 2001JPhA...34.7081W, 9684671
- Ren, Ji-Gang, Xu, Ping, Yong, Hai-Lin, Zhang, Liang, Liao, Sheng-Kai, Yin, Juan, Liu, Wei-Yue, Cai, Wen-Qi, Yang, Meng, 2017, Ground-to-satellite quantum teleportation, Nature, 549, 7670, 70–73, 10.1038/nature23675, 28825708, 1707.00934, 2017Natur.549...70R, 4468803
- Masahiro, Hotta, A PROTOCOL FOR QUANTUM ENERGY DISTRIBUTION, Phys. Lett. A 372 5671 (2008)
- Ikeda, Kazuki, 2023, Demonstration of Quantum Energy Teleportation on Superconducting Quantum Hardware, Physical Review Applied, 20, 2, 024051, 2301.02666, 2023PhRvP..20b4051I, 10.1103/PhysRevApplied.20.024051
- January 16, 2023, First Demonstration of Energy Teleportation, Discover magazine
- Hansonlab demonstrates quantum teleportation, 29 May 2014
- Comment on "Fractional quantum mechanics" and "Fractional Schrödinger equation", Wei, Yuchuan, 29 June 2016, Physical Review E, 93, 6, 066103, 10.1103/PhysRevE.93.066103, 27415397, 1607.01356, 2016PhRvE..93f6103W, 20010251
- Porras, Miguel A., Casado-Álvaro, Miguel, Gonzalo, Isabel, 2024-03-12, Teleportation of a quantum particle in a potential via quantum Zeno dynamics, Physical Review A, en, 109, 3, 10.1103/PhysRevA.109.032207, 2469-9926, 2305.07968
Further reading
- Lawrence M. Krauss (1995), The Physics of Star Trek, Basic Books, isbn 978-0465002047
- Eric W. Davis (2004), Teleportation Physics Study, Air Force Research Laboratory AFRL-PR-ED-TR-2003-0034
- Will Human Teleportation Ever Be Possible?
- Human teleportation is far more impractical than we thought Archived 16 October 2015, at web.archive.org
- Y. Wei (2016), How to teleport a particle rather than a state Phys Rev E 93. 066103