memQ Announces Innovative Software Stack Enabling Clustered Quantum Computing

memQ Announces Innovative Software Stack Enabling Clustered Quantum Computing Innovative network-based quantum compiler leverages NVIDIA CUDA-Q to enable greater scalability, on-demand modularity, and repeatable deployment of quantum workloads CHICAGO, IL, March 16, 2026 – memQ™, the industry leader in quantum networking solutions for distributed quantum computing, announced today the roadmap for their Extensible Distributed Quantum […]

memQ Announces Innovative Software Stack Enabling Clustered Quantum Computing

CHICAGO, IL, March 16, 2026 – memQ™, the industry leader in quantum networking solutions for distributed quantum computing, announced today the roadmap for their Extensible Distributed Quantum Compiler (xDQC), built upon the NVIDIA CUDA-Q platform.  This novel approach to quantum workload distribution allows workloads to be distributed across multiple quantum processors in a system or […]

A full-stack simulation framework for distributed quantum processors with CUDA-Q

The quantum computing industry is shifting from single, monolithic quantum processors (QPUs) to distributed systems where multiple QPUs are connected by quantum networks. This trend, visible across superconducting qubits[1], trapped ions[2], and neutral atoms[3], requires specialized software for orchestration and quantum link hardware & architecture co-design.  Know more about memQ’s full-stack simulation framework here.

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memQ Featured in White House OSTP Highlights report

memQ was in rare company as we were highlighted in the White House ‘Office of Science & Technology Policy Highlights: Year One’ report that was published this week, calling out our work with the Air Force Research Laboratory (AFRL) that, “…blends the science of quantum technologies with proven, existing semiconductor manufacturing processes to deliver reliable […]

Erbium quantum memory platform with long optical coherence via back-end-of-line deposition on foundry-fabricated photonics

Phys. Rev. Applied 24, 054037 Realizing scalable quantum interconnects necessitates the integration of solid-state quantum memories with foundry photonics processes. While prior photonic integration efforts have relied upon specialized, laboratory-scale fabrication techniques, this work demonstrates the monolithic integration of a quantum memory platform with low-loss foundry photonic circuits via back-end-of-line deposition. We deposited thin films of […]

Gate Teleportation vs Circuit Cutting in Distributed Quantum Computing

arXiv:2510.08894 Distributing circuits across quantum processor modules will enable the execution of circuits larger than the qubit count limitations of monolithic processors. While distributed quantum computation has primarily utilized circuit cutting, it incurs an exponential growth of sub-circuit sampling and classical post-processing overhead with an increasing number of cuts. The entanglement-based gate teleportation approach does […]

Quantum computing arrives at the Chicago South side with PICs & Shovels

Huge congratulations to our friends at PsiQuantum on officially breaking ground for their new facility at the Illinois Quantum and Microelectronics Park.  Illinois Gov. JB Pritzker was joined by leading quantum business, research, academic, and government institutions to celebrate the groundbreaking of the facility located at the Quantum Shore on Chicago’s South SIde.  As a […]