Skip to main content

A quantum information utility package.

Project description

gav-quantum

gav-quantum is a quantum information utility package developed by Emil Marinov and Gray Alien Ventures.

Installation

pip install gav-quantum

Usage

Sample import statement below:
from gav_quantum import X, Y, Z, operator_from_sparse_pauli

Objects

ZERO - A column vector representation of the 0-state, [1 0]^T.

ONE - A column vector representation of the 1-state, [0 1]^T.

X, Y, Z - Standard X, Y, and Z Pauli operators.

PAULIS - An array of the Pauli operators in standard quantum information convention. Convenient for enumerations.

BELL_STATES[PHI_PLUS | PHI_MINUS | PSI_PLUS | PSI_MINUS] - The four maximally entangled Bell states.

Functions

W(N)

Inputs

  • N - The number of qubits in the quantum state.

Output

  • A vector corresponding to the maximally entangled N-qubit W-state.

GHZ(N)

Inputs

  • N - The number of qubits in the quantum state.

Output

  • A vector corresponding to the maximally entangled N-qubit GHZ-state.

operator_from_sparse_pauli(N, nonidentities) - Creates an operator from a list of tuples of qubits and the non-identity Pauli operators acting upon them.

Inputs

  • N - The number of qubits in the quantum state.
  • nonidentities - List of tuples specifying qubit number (indexed at 0) in ascending order and corresponding Pauli operator. Example: [(0,X),(2,Y)]

Output

  • A 2^N by 2^N operator.

Notes

  • Make sure to have also imported whichever Pauli operators (X, Y, Z) are used in the nonidentities argument

Paulis_N_k(N, k)

Generates a list of the subset of operator bases over N qubits of weight less than or equal to k; it is a "tensor product of N operators, each of which is in {I, X, Y, Z} such that at most k are not I" [1].

Inputs

  • N - The number of qubits in the quantum state.
  • k - The maximum locality of Pauli operators acting upon the qubits.

Output

  • A 2-tuple containing the set of operators where the first element is a list of the operators in matrix form and the second element is a verbose human-friendly list specifying qubit number (indexed at 0) in ascending order and corresponding Pauli operator. Example: [(0,X),(2,Y)]

Notes

  • Returns the full operator basis if k = N

QMaxCutHamiltonian(N, k, mode="Ising")

Generates a Quantum MaxCut Hamiltonian.

Inputs

  • N - The number of qubits in the quantum state.
  • k - The locality of qubit interations.
  • mode - "Ising" | "Heisenberg"

Output

  • A 2^N by 2^N matrix corresponding to a QMaxCut Hamiltonian.

moment_constraint_matrix(N, E, k)

Generates the constraint matrix accompanying the moment matrix for a Lasserre semidefinite program assuming an anti-ferromagnetic state. Entries correspond to a matrix with rows and columns indexed by the subset of operator bases (see Paulis_N_k(N, k)). A row with adjacent edges with the same Pauli operator and a column with the same adjacent edges and Pauli operator between them are penalized with a -0.5 weight for their anti-alignment. For example, if the edges in question are 0 and 2, row X_0 X_2 and column X_0 X_2 are penalized for not exhibiting anti-alignment.

Inputs

  • N - The number of qubits in the quantum state or nodes in the constraint graph.
  • E - A 2-tuple corresponding to the edge of the constraint graph with constraint graph node numbers in ascending order as constraints. Example: (0, 2)
  • k - The locality of qubit interactions.

Output

  • A $\gamma$ by $\gamma$ matrix where $\gamma$ is the size of the subset of operator bases corresponding to the inputted N and k and the entries are real.

References

[1] Parekh, O., & Thompson, K. (2021). Application of the Level-2 Quantum Lasserre Hierarchy in Quantum Approximation Algorithms. arXiv. https://doi.org/10.48550/arXiv.2105.05698

Project details


Download files

Download the file for your platform. If you're not sure which to choose, learn more about installing packages.

Source Distribution

gav_quantum-0.0.7.tar.gz (5.5 kB view details)

Uploaded Source

Built Distribution

If you're not sure about the file name format, learn more about wheel file names.

gav_quantum-0.0.7-py3-none-any.whl (5.9 kB view details)

Uploaded Python 3

File details

Details for the file gav_quantum-0.0.7.tar.gz.

File metadata

  • Download URL: gav_quantum-0.0.7.tar.gz
  • Upload date:
  • Size: 5.5 kB
  • Tags: Source
  • Uploaded using Trusted Publishing? No
  • Uploaded via: twine/6.1.0 CPython/3.10.9

File hashes

Hashes for gav_quantum-0.0.7.tar.gz
Algorithm Hash digest
SHA256 7d1c251ab4cde34109170b037b7501ba7b1e5327c5f08c63be18e4eb097297f9
MD5 076d869eb2fcff4e0c1cf999ad70661c
BLAKE2b-256 e4f13f20526847f9285b46c2ece29f54b28427c1e4ce350b5a8c74bead633baf

See more details on using hashes here.

File details

Details for the file gav_quantum-0.0.7-py3-none-any.whl.

File metadata

  • Download URL: gav_quantum-0.0.7-py3-none-any.whl
  • Upload date:
  • Size: 5.9 kB
  • Tags: Python 3
  • Uploaded using Trusted Publishing? No
  • Uploaded via: twine/6.1.0 CPython/3.10.9

File hashes

Hashes for gav_quantum-0.0.7-py3-none-any.whl
Algorithm Hash digest
SHA256 423f372c4aad62fb68470552fd8e887a2adc3f3c71d89f0cec1c70bba39e5eca
MD5 61a990e543627ea961ff8116edc472ea
BLAKE2b-256 99c5e4d2ac99fb8a206725fd81bc5a6b3fddb0756a497d027b0c12f761603c39

See more details on using hashes here.

Supported by

AWS Cloud computing and Security Sponsor Datadog Monitoring Depot Continuous Integration Fastly CDN Google Download Analytics Pingdom Monitoring Sentry Error logging StatusPage Status page