About Zain Saleem

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We build sounds styles that seize decoherence, readout error, and gate imperfections for this distinct processor. We then perform noisy simulations of the strategy to be able to account with the observed experimental final results. We find an agreement inside twenty% concerning the experimental and the simulated results probabilities, and we observe that recombining noisy fragments yields Total success that can outperform the outcome with out fragmentation. remarks:

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the utmost impartial set (MIS) difficulty of graph principle using the quantum alternating operator ansatz is researched and it's revealed the algorithm clearly favors the unbiased set Using the larger sized amount of factors even for finite circuit depth.

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This paper introduces Qurzon, a proposed novel quantum compiler that comes with the marriage of approaches of divide and compute with the condition-of-the-art algorithms of exceptional qubit placement for executing on serious quantum products.

This get the website job done model the best compiler for DQC utilizing a Markov conclusion method (MDP) formulation, developing the existence of an best algorithm, and introduces a constrained Reinforcement Learning process to approximate this optimal compiler, tailor-made into the complexities of DQC environments.

The propagation of glitches Investigation makes it possible for us to verify and much better fully grasp this concept. We also suggest a parameter estimation process involving reasonably low resource consuming measurements accompanied by higher source consuming measurements and reveal it in simulation. Comments:

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look at a PDF of the paper titled exceptional time for sensing in open quantum devices, by Zain H. Saleem and a couple of other authors

look at PDF Abstract:Noisy, intermediate-scale quantum computers have intrinsic restrictions regarding the amount of qubits (circuit "width") and decoherence time (circuit "depth") they can have. below, for The 1st time, we demonstrate a recently launched strategy that breaks a circuit into more compact subcircuits or fragments, and so makes it achievable to run circuits that are possibly as well broad or as well deep for a supplied quantum processor. We examine the habits of the method on one among IBM's 20-qubit superconducting quantum processors with different numbers of qubits and fragments.

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