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The work proves that precise control of atoms to create a transistor smaller than any other quantum system available is possible and opens the door to further research into harnessing these tiny transistors for computers and systems with orders of magnitude more processing power than today's machines.
For Deutsch, a quantum computer in superposition, like any other quantum system, exists in some sense in many classical universes simultaneously.
It therefore makes sense when Howard (2004, p.671) holds that Bohr considered the post-measurement joint state of the object and the measuring apparatus to be entangled as in any other quantum interaction involving an entangled pair.
Only the seven species of quantity would be quanta by themselves, while any other quantum would be such per accidens, and so indirectly, because of its connection to one (or more) of the seven quanta per se (In Cat., cap. de quantitate, fol. 116r).
The same is true for quantum physics once one removes "measurement" from its spurious role as an interpretive principle, and instead treats it like any other quantum process, see section 7. Third, the histories approach is time symmetrical in the sense that the rules for assigning probabilities do not single out a particular "direction" or sense of time.
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But if any of these plausible assumptions failed, it may be possible to account for the EPR/B experiment (and more generally for all other quantum phenomena) without postulating any non-local influences.
The photon is the gauge boson for electromagnetism, and therefore all other quantum numbers of the photon (such as lepton number, baryon number, and flavour quantum numbers) are zero.
Intel's celebration of this particular chip is a bit arbitrary; 17 isn't some magic number in the quantum world, nor does this chip do any special tricks other quantum computer systems can't.
In orthodox quantum mechanics as well as in any other current quantum theory that postulates non-locality (i.e., influences between distant, space-like separated systems), the influences between the distant measurement events in the EPR/B experiment do not propagate continuously in space-time.
One involves genetics, the other quantum physics.
If you can easily access a lecture in quantum mechanics from the best lecturer on quantum mechanics, how many other quantum mechanics lectures do you need?
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com