Rezultaty
The first version of the readout optimization (RO) package will be available and the first version of the VQE solver for CO2+benzene will be made public, discussed in Task 4.5. RO Beta will contain a method to improve the readout quality by imposing fermionic marginal constraints on the measurement results, and a Bayesian optimizer for the number of measurements.
QNLP pre-alpha prototypeQNLP prealpha prototype
QRBS SW specificationsImplementation of QRL algorithm on real architecture
VA Beta and BBO Beta (Open source software)
A first version of the Hamiltonian preparation including beyond BornOppenheimer BBO terms will be finished and a first version of our variational algorithms VA package will be finished The BBO module will make use of PySCF and work at first only for very small molecules The VA Package will contain at least the VQEUSSCD Ansatz and a brute force translation to gates
Initial release of librariesInitial release of libraries, then iterative releases in continuous integration mode between major release.
QPSA Divide and Quantum open source softwareCompletion of first software suite (Open source software)
We will have a combined release of VA 1.0, ASG Beta and BBO 1.0. This will allow for smooth benchmarking on simulated quantum computers. The individual tools will have the following specifications:• The full VA package will be released. Approaches like UCCSD and VHA will be included. Translation to gate sets will be provided. •A first version of the automatic subspace generation will be finished. It will at least be able to split a molecule into two parts, which can be evaluated independently on a quantum computer. Each part can be passed to BBO and, then to VA 1.0. •A first version of BBO module will be released.
QNLP alpha prototypeQCCC Alpha (Open source software)
The first version of the VQE solver for benzene will be made public discussed in Task 45
Preliminary QRBS software and IDC application specificationfirst version RBS and QRBS SW, spec doc cancer diagnosis application
myQLM special buildSpecial build with support of hardware platforms (full compilation chain), including validation report on the platforms
QPSA Quantum Walks / Markov algorithmsstate of the art of quantum Markov algorithms and their application to the problem of PSA in the dynamic case, in addition to a series of test using relevant instances
Review of stateoftheart for Pricing and Computation of VaR
Extension of diagrammatical languages (i.e. ZX calculus), to represent Hamiltonians, and the specification of an algorithm to compute the exponential of the HamiltonianExtension of diagrammatical languages ie ZX calculus to represent Hamiltonians and the specification of an algorithm to compute the exponential of the Hamiltonian
QPSA Divide and Quantum benchmark reportreport on the results on relevant instances defined in D66 and discussion on the obtained speedup
Update of review of state-of-the-art for Pricing and Computation of VaRUpdate of Review of stateoftheart for Pricing and Computation of VaR Value at Risk
QRBS requirements analysisrequirements analysis of the RBS and QRBS frameworks
QPSA Divide and quantum mathematical foundationstudy report assumptions mathematical background mathematical developments issues and limitations mathematical approach for solving the problem
Evaluation of quantum algorithms for pricing and computation of VaRSpecification of QRL algorithm for inventory management
QRBS models, architecture and formal specification
report on mathematical and algorithm models report on simulation results design document
QNLP design and formal specificationDesign doc specification doc evaluation methodology doc for the software libraries and applications
The public website will be considered in this deliverable It will subsequently be maintained and updated to reflect the projects life
Publikacje
Autorzy:
Gómez, Andrés; Leitao, Álvaro; Manzano, Alberto; Musso, Daniele; Nogueiras, María R.; Ordóñez, Gustavo; Vázquez, Carlos
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Archives of Computational Methods in Engineering, Numer 1, 2022
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MDPI
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