Kolmogorov extension theorem for (quantum) causal modelling and general probabilistic theories
arXiv:1712.02589 · doi:10.22331/q-2020-04-20-255
Abstract
In classical physics, the Kolmogorov extension theorem lays the foundation for the theory of stochastic processes. It has been known for a long time that, in its original form, this theorem does not hold in quantum mechanics. More generally, it does not hold in any theory of stochastic processes -- classical, quantum or beyond -- that does not just describe passive observations, but allows for active interventions. Such processes form the basis of the study of causal modelling across the sciences, including in the quantum domain. To date, these frameworks have lacked a conceptual underpinning similar to that provided by Kolmogorov's theorem for classical stochastic processes. We prove a generalized extension theorem that applies to all theories of stochastic processes, putting them on equally firm mathematical ground as their classical counterpart. Additionally, we show that quantum causal modelling and quantum stochastic processes are equivalent. This provides the correct framework for the description of experiments involving continuous control, which play a crucial role in the development of quantum technologies. Furthermore, we show that the original extension theorem follows from the generalized one in the correct limit, and elucidate how a comprehensive understanding of general stochastic processes allows one to unambiguously define the distinction between those that are classical and those that are quantum.
22 pages, 4 figures, published version
References in corpus (11)
- Quantum Circuits Architecture
- Transforming quantum operations: quantum supermaps
- Operational Markov condition for quantum processes
- Gleason-Type Derivations of the Quantum Probability Rule for Generalized Measurements
- An introduction to operational quantum dynamics
- Coherence and non-classicality of quantum Markov processes
- Classical quantum stochastic processes
- Superdensity Operators for Spacetime Quantum Mechanics
- Entanglement, non-Markovianity, and causal non-separability
- Causation does not explain contextuality
- A Kolmogorov Extension Theorem for POVMs
Cited by in corpus (56)
- Quantum stochastic processes and quantum non-Markovian phenomena
- Demonstration of non-Markovian process characterisation and control on a quantum processor
- Non-Markovian Quantum Process Tomography
- When is a non-Markovian quantum process classical?
- Tensor network based machine learning of non-Markovian quantum processes
- Witnessing quantum memory in non-Markovian processes
- Classicality, Markovianity and local detailed balance from pure state dynamics
- Resource theories of multi-time processes: A window into quantum non-Markovianity
- Randomized benchmarking for non-Markovian noise
- Genuine Multipartite Entanglement in Time
- A discrete memory-kernel for multi-time correlations in non-Markovian quantum processes
- Experimental Demonstration of Instrument-specific Quantum Memory Effects and Non-Markovian Process Recovery for Common-Cause Processes
- Markovianization with approximate unitary designs
- Non-Markovian Memory Strength Bounds Quantum Process Recoverability
- Operational Metric for Quantum Chaos and the Corresponding Spatiotemporal Entanglement Structure
- Classicality with(out) decoherence: Concepts, relation to Markovianity, and a random matrix theory approach
- Relaxation of Multitime Statistics in Quantum Systems
- First Principles Numerical Demonstration of Emergent Decoherent Histories
- Characterising the Hierarchy of Multi-time Quantum Processes with Classical Memory
- Reassessing thermodynamic advantage from indefinite causal order
- On the connection between microscopic description and memory effects in open quantum system dynamics
- Einselection, Equilibrium and Cosmology
- Equilibration of Multitime Quantum Processes in Finite Time Intervals
- Experimental Control of the Degree of Non-Classicality via Quantum Coherence
- On the sampling complexity of open quantum systems
- Equilibration on average in quantum processes with finite temporal resolution
- Non-Markovian memory in IBMQX4
- Towards a general framework of Randomized Benchmarking incorporating non-Markovian Noise
- Transfer-tensor description of memory effects in open-system dynamics and multi-time statistics
- Operational Markovianization in Randomized Benchmarking
- Objectivity of classical quantum stochastic processes
- Capturing long-range memory structures with tree-geometry process tensors
- Quantum processes as thermodynamic resources: the role of non-Markovianity
- Quantum Markov monogamy inequalities
- The spatiotemporal doubled density operator: a unified framework for analyzing spatial and temporal quantum processes
- Hidden Quantum Memory: Is Memory There When Somebody Looks?
- Relations between Markovian and non-Markovian correlations in multitime quantum processes
- Statistics of projective measurement on a quantum probe as a witness of noncommutativity of algebra of a probed system
- What can unitary sequences tell us about multi-time physics?
- Relating compatibility and divisibility of quantum channels
- Causal influence in operational probabilistic theories
- From the Heisenberg to the Schrödinger Picture: Quantum Stochastic Processes and Process Tensors
- Double or nothing: a Kolmogorov extension theorem for multitime (bi)probabilities in quantum mechanics
- Entropic witness for quantum memory in open system dynamics
- Entanglement-breaking channels are a quantum memory resource
- Decoherence of Histories: Chaotic Versus Integrable Systems
- Unifying non-Markovian characterisation with an efficient and self-consistent framework
- Process tensor distinguishability measures
- Adaptively partitioned analog quantum simulation on near-term quantum computers: The nonclassical free-induction decay of NV centers in diamond
- Classical Invasive Description of Informationally-Complete Quantum Processes
- A perturbation theory for multi-time correlation functions in open quantum systems
- Quantum non-Markovianity elusive to interventions
- Phenomenological quantum mechanics: I. Phenomenology of quantum observables
- Connecting Commutativity and Classicality for Multi-Time Quantum Processes
- Process Tensor Approaches to Non-Markovian Quantum Dynamics
- Diagnosing chaos with projected ensembles of process tensors