Real Time Optimization Apparatus for Dynamic Code Evolution using Quantum Machine Learning with Non-Fungible Tokens

    公开(公告)号:US20240345890A1

    公开(公告)日:2024-10-17

    申请号:US18135233

    申请日:2023-04-17

    IPC分类号: G06F9/50 G06N10/00

    摘要: A quantum computing platform may train, using historical workload information, a container configuration generation model. The computing platform may receive, from a workload processing system, a data feed indicating current workload information. The computing platform may input, into the container configuration generation model, the current workload information, which may cause the container configuration generation model to produce a container configuration output, where the container configuration output may be an optimal batch configuration for processing the data feed, and where the optimal batch configuration may be a configuration that optimizes between computing resources and processing speed. The computing platform may send, to the workload processing system, the container configuration output and one or more commands directing the workload processing system to process the data feed using the optimal batch configuration, which may cause the workload processing system to process the data feed using the optimal batch configuration.

    OBLIVIOUS CARRY RUNWAY REGISTERS FOR PERFORMING PIECEWISE ADDITIONS

    公开(公告)号:US20240338582A1

    公开(公告)日:2024-10-10

    申请号:US18745923

    申请日:2024-06-17

    申请人: Google LLC

    发明人: Craig Gidney

    摘要: Methods and apparatus for piecewise addition into an accumulation register using one or more carry runway registers, where the accumulation register includes a first plurality of qubits with each qubit representing a respective bit of a first binary number and where each carry runway register includes multiple qubits representing a respective binary number. In one aspect, a method includes inserting the one or more carry runway registers into the accumulation register at respective predetermined qubit positions, respectively, of the accumulation register; initializing each qubit of each carry runway register in a plus state; applying one or more subtraction operations to the accumulation register, where each subtraction operation subtracts a state of a respective carry runway register from a corresponding portion of the accumulation register; and adding one or more input binary numbers into the accumulation register using piecewise addition.

    Port server for heterogeneous hardware

    公开(公告)号:US12112235B2

    公开(公告)日:2024-10-08

    申请号:US17333439

    申请日:2021-05-28

    申请人: IonQ Inc.

    摘要: Systems and techniques are provided for a port server for heterogeneous hardware. A port server may include computing devices that may include multiple connection types. Storage devices may be connected to the computing devices. The computing devices may receive a communication from an external computing device intended for a hardware device of a heterogenous system over one of the connection types. The communication may be sent to the hardware device of the heterogenous system using one of the connection types. A response may be received from the hardware device of the heterogenous system over the connection type used to send the communication to the hardware device. The response from the hardware device of the heterogenous system may be sent to the external computing device over the connection type over which the communication was received from the external computing device.

    Scalable neutral atom based quantum computing

    公开(公告)号:US12106183B2

    公开(公告)日:2024-10-01

    申请号:US18470604

    申请日:2023-09-20

    IPC分类号: G06N10/00 G02F1/33 G06E3/00

    CPC分类号: G06N10/00 G02F1/33 G06E3/00

    摘要: The present disclosure provides methods and systems for performing non-classical computations. The methods and systems generally use a plurality of spatially distinct optical trapping sites to trap a plurality of atoms, one or more electromagnetic delivery units to apply electromagnetic energy to one or more atoms of the plurality to induce the atoms to adopt one or more superposition states of a first atomic state and a second atomic state, one or more entanglement units to quantum mechanically entangle at least a subset of the one or more atoms in the one or more superposition states with at least another atom of the plurality, and one or more readout optical units to perform measurements of the superposition states to obtain the non-classical computation.

    All-to-all coupled quantum computing with atomic ensembles in an optical cavity

    公开(公告)号:US12106181B2

    公开(公告)日:2024-10-01

    申请号:US17237155

    申请日:2021-04-22

    IPC分类号: G06N10/00 H04B10/70

    CPC分类号: G06N10/00 H04B10/70

    摘要: A quantum computer uses interactions between atomic ensembles mediated by an optical cavity mode to perform quantum computations and simulations. Using the cavity mode as a bus enables all-to-all coupling and execution of non-local gates between any pair of qubits. Encoding logical qubits as collective excitations in ensembles of atoms enhances the coupling to the cavity mode and reduces the experimental difficulty of initial trap loading. By using dark-state transfers via the cavity mode to enact gates between pairs of qubits, the gates become insensitive to the number of atoms within each collective excitation, making it possible to prepare an array of qubits through Poissonian loading without feedback.

    Machine learning and computer-based generation of standard work matrices for improving execution of a standard work

    公开(公告)号:US12106180B2

    公开(公告)日:2024-10-01

    申请号:US17194168

    申请日:2021-03-05

    申请人: oneFiveFIFTY LLC

    发明人: Michael T. Nelson

    摘要: Methods and computer program products for organization and improvement of systems, processes, and operations for performing work. A system includes a database for storing metric data, a quantum computer in communication with the database, and a server in communication with the database and the quantum computer. Instructions implemented by the server include providing the metric data associated with the plurality of projects to the quantum computer for the quantum computer to quantify metrics for each of the plurality of projects and receiving quality improvement analysis from the quantum computer for the plurality of projects. The instructions include identifying five or fewer projects of the plurality of projects based on which of the plurality of projects fails a quality threshold for the metric data by a greatest margin.