A Proposal for Evading the Measurement Uncertainty in Classical and Quantum Computing: Application to a Resonant Tunneling Diode and a Mach-Zehnder Interferometer
Articolo
Data di Pubblicazione:
2019
Citazione:
A Proposal for Evading the Measurement Uncertainty in Classical and Quantum Computing: Application to a Resonant Tunneling Diode and a
Mach-Zehnder Interferometer / Pandey, Devashish; Bellentani, Laura; Villani, Matteo; Albareda, Guillermo; Bordone, Paolo; Bertoni, Andrea; Oriols, Xavier. - In: APPLIED SCIENCES. - ISSN 2076-3417. - 9:11(2019), pp. 2300-1-2300-21. [10.3390/app9112300]
Abstract:
Measuring properties of quantum systems is governed by a stochastic (collapse
or state-reduction) law that unavoidably yields an uncertainty (variance) associated with the
corresponding mean values. This non-classical source of uncertainty is known to be manifested
as noise in the electrical current of nanoscale electron devices, and hence it can flaw the good
performance of more complex quantum gates. We propose a protocol to alleviate this quantum
uncertainty that consists of (i) redesigning the device to accommodate a large number of electrons
inside the active region, either by enlarging the lateral or longitudinal areas of the device and
(ii) re-normalizing the total current to the number of electrons. How the above two steps can be
accommodated using the present semiconductor technology has been discussed and numerically
studied for a resonant tunneling diode and a Mach-Zehnder interferometer, for classical and quantum
computations, respectively. It is shown that the resulting protocol formally resembles the so-called
collective measurements, although, its practical implementation is substantially different.
Tipologia CRIS:
Articolo su rivista
Keywords:
quantum computing; classical computing; Mach-Zehnder Interferometer; resonant
tunneling diode; quantum uncertainty; measurement
Elenco autori:
Pandey, Devashish; Bellentani, Laura; Villani, Matteo; Albareda, Guillermo; Bordone, Paolo; Bertoni, Andrea; Oriols, Xavier
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