This is an audio version of the Wikipedia Article:
https://en.wikipedia.org/wiki/Quantum...
00:00:38 1 Basics
00:00:47 1.1 Quantum networks for computation
00:01:35 1.2 Quantum networks for communication
00:02:55 1.3 Overview of the elements of a quantum network
00:04:25 2 Elements of a quantum network
00:04:35 2.1 End nodes: quantum processors
00:06:39 2.2 Communication lines: physical layer
00:07:15 2.2.1 Fiber optic networks
00:08:13 2.2.2 Free space networks
00:09:10 2.3 Repeaters
00:09:48 2.3.1 Trusted repeaters
00:12:26 2.3.2 Quantum repeaters
00:15:12 2.3.3 Error correction
00:16:38 2.3.4 Entanglement purification
00:17:15 3 Applications
00:18:15 3.1 Secure Communicationssup[24]/sup
00:19:23 3.2 Jamming Protection
00:20:14 3.2.1 Frequency-Hopping Spread Spectrum(FHSS)
00:20:55 3.2.2 Direct Sequence Spread Spectrum (DSSS)
00:21:39 3.3 Jamming
00:22:18 3.3.1 Spot Jamming
00:23:06 3.3.2 Sweep Jamming
00:23:39 3.3.3 Barrage Jamming
00:24:18 4 Current status
00:24:27 4.1 Quantum internet
00:24:43 4.2 Quantum key distribution networks
00:28:39 5 See also
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SUMMARY
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Quantum networks form an important element of quantum computing and quantum communication systems. Quantum networks facilitate the transmission of information in the form of quantum bits, also called qubits, between physically separated quantum processors. A quantum processor is a small quantum computer being able to perform quantum logic gates on a certain number of qubits. Quantum networks work in a similar way to classical networks. The main difference, as will be detailed more in later paragraphs, is that quantum networking like quantum computing is better at solving certain problems, such as modeling quantum systems.