Quantum computingnecessary classical devices knowledge?

bifolco84
Messages
7
Reaction score
0
Hi, i have just started studying quantum computing. i found it very interesting and i was wondering to dedicate my thesis on it...BUT...i suffer a lack of knowledge about classical computing devices (i'm not talking about the classic works on logic by Turing and Church and so forth)...so..can you suggest what should i know and which are the books that would help me to reach a global perspective on this subject. In the same time i'd like to avoid every superfluous study on classical computers..just what i need to step onto the quantum world. Thank you for aswering.
 
Physics news on Phys.org
I am doing a study project on Quantum Computing, please suggest me some of the books which can give me the very basic knowledge of the area and about the Shor's algorithm.
So that i can understand the subject of Quantum Computing.
Thanking you
 
Nielsen&Chuang's book "Quantum Computation and Quantum Information" is a good place to start.
 
As f95toli said Nielsen and Chuang is the best place to start. It is very comprehensive and assumes no previous knowledge of either quantum mechanics or computing theory.
Another plus is that it has exercises and a nice bibliography.
 
Thank you for the suggestions.
 
Not an expert in QM. AFAIK, Schrödinger's equation is quite different from the classical wave equation. The former is an equation for the dynamics of the state of a (quantum?) system, the latter is an equation for the dynamics of a (classical) degree of freedom. As a matter of fact, Schrödinger's equation is first order in time derivatives, while the classical wave equation is second order. But, AFAIK, Schrödinger's equation is a wave equation; only its interpretation makes it non-classical...
Insights auto threads is broken atm, so I'm manually creating these for new Insight articles. Towards the end of the first lecture for the Qiskit Global Summer School 2025, Foundations of Quantum Mechanics, Olivia Lanes (Global Lead, Content and Education IBM) stated... Source: https://www.physicsforums.com/insights/quantum-entanglement-is-a-kinematic-fact-not-a-dynamical-effect/ by @RUTA
Is it possible, and fruitful, to use certain conceptual and technical tools from effective field theory (coarse-graining/integrating-out, power-counting, matching, RG) to think about the relationship between the fundamental (quantum) and the emergent (classical), both to account for the quasi-autonomy of the classical level and to quantify residual quantum corrections? By “emergent,” I mean the following: after integrating out fast/irrelevant quantum degrees of freedom (high-energy modes...
Back
Top