Quantum stochastic processes and quantum non-Markovian phenomena
The field of classical stochastic processes forms a major branch of mathematics. Stochastic
processes are, of course, also very well studied in biology, chemistry, ecology, geology …
processes are, of course, also very well studied in biology, chemistry, ecology, geology …
Demonstration of non-Markovian process characterisation and control on a quantum processor
In the scale-up of quantum computers, the framework underpinning fault-tolerance generally
relies on the strong assumption that environmental noise affecting qubit logic is uncorrelated …
relies on the strong assumption that environmental noise affecting qubit logic is uncorrelated …
Non-Markovian quantum process tomography
Characterization protocols have so far played a central role in the development of noisy
intermediate-scale quantum (NISQ) computers capable of impressive quantum feats. This …
intermediate-scale quantum (NISQ) computers capable of impressive quantum feats. This …
Exploiting the causal tensor network structure of quantum processes to efficiently simulate non-Markovian path integrals
In the path integral formulation of the evolution of an open quantum system coupled to a
Gaussian, noninteracting environment, the dynamical contribution of the latter is encoded in …
Gaussian, noninteracting environment, the dynamical contribution of the latter is encoded in …
Completely positive divisibility does not mean Markovianity
In the classical domain, it is well known that divisibility does not imply that a stochastic
process is Markovian. However, for quantum processes, divisibility is often considered to be …
process is Markovian. However, for quantum processes, divisibility is often considered to be …
Machine learning non-Markovian quantum dynamics
Machine learning methods have proved to be useful for the recognition of patterns in
statistical data. The measurement outcomes are intrinsically random in quantum physics …
statistical data. The measurement outcomes are intrinsically random in quantum physics …
Quantum metrology for non-Markovian processes
A Altherr, Y Yang - Physical Review Letters, 2021 - APS
Quantum metrology is a rapidly develo** branch of quantum technologies. While various
theories have been established on quantum metrology for Markovian processes, ie …
theories have been established on quantum metrology for Markovian processes, ie …
Tensor-network-based machine learning of non-Markovian quantum processes
We show how a tensor-network-based machine learning algorithm can learn the structures
of generic, non-Markovian, quantum stochastic processes. First, a process is represented as …
of generic, non-Markovian, quantum stochastic processes. First, a process is represented as …
Structure of quantum stochastic processes with finite Markov order
Non-Markovian quantum processes exhibit different memory effects when measured in
different ways; an unambiguous characterization of memory length requires accounting for …
different ways; an unambiguous characterization of memory length requires accounting for …
Randomized benchmarking for non-Markovian noise
Estimating the features of noise is the first step in a chain of protocols that will someday lead
to fault-tolerant quantum computers. The randomized benchmarking (RB) protocol is …
to fault-tolerant quantum computers. The randomized benchmarking (RB) protocol is …