Guide to Mathematical Concepts of Quantum Theory
arXiv:0810.3536 · doi:10.2478/v10155-010-0091-y
Abstract
Quantum Theory is one of the pillars of modern science developed over the last hundred years. In this review paper we introduce, step by step, the quantum theory understood as a mathematical model describing quantum experiments. We start with splitting the experiment into two parts: a preparation process and a measurement process leading to a registration of a particular outcome. These two ingredients of the experiment are represented by states and effects, respectively. Further, the whole picture of quantum measurement will be developed and concepts of observables, instruments and measurement models representing the three different descriptions on experiments will be introduced. In the second stage, we enrich the model of the experiment by introducing the concept of quantum channel describing the system changes between preparations and measurements. At the very end we review the elementary properties of quantum entanglement. The text contains many examples and exercise covering also many topics from quantum information theory and quantum measurement theory. The goal is to give a mathematically clear and self-containing explanation of the main concepts of the modern language of quantum theory.
188 pages. Extension of lecture notes from a course that the authors gave in 2007/08 in Research Center for Quantum Information, Bratislava
References in corpus (5)
Cited by in corpus (9)
- Advances in Quantum Cryptography
- Quantifying entanglement resources
- Review of performance metrics of spin qubits in gated semiconducting nanostructures
- The modern tools of quantum mechanics (A tutorial on quantum states, measurements, and operations)
- Generating and using truly random quantum states in Mathematica
- Distances between quantum states in the tomographic-probability representation
- Quantum non-Markovian behavior at the chaos border
- Conditions for a quadratic quantum speedup in nonlinear transforms with applications to energy contract pricing
- Coarse-grained dynamics in quantum many-body systems using the maximum entropy principle