Collaborations
5
Min read
As an early adopter of the NVIDIA GH200 Grace Hopper Superchip systems, qBraid provides unparalleled access to today’s most advanced computing technologies.
Contents:
[Seattle, 9/18/23] — qBraid, a pioneering cloud-based quantum computing software startup, is thrilled to announce that their paper, "Benchmarking Variational Quantum Circuits with Permutation Symmetry," has received the prestigious Best Paper Award for quantum algorithms at the IEEE Quantum Computing & Engineering (QCE) conference.
The award-winning paper introduces SnCQA, a set of hardware-efficient
variational circuits of equivariant quantum convolutional circuits respective to permutation symmetries and spatial lattice symmetries with the number of qubits n. "We are incredibly honored to receive this recognition from IEEE QCE," said Kanav Setia, CEO and co-founder of qBraid. "SnCQA represents a novel class of variational quantum ansatze that is a promising design for NISQ hardware. This achievement underscores qBraid's commitment to pushing the boundaries of quantum software and algorithms,” remarks qBraid’s research scientist Junyu Liu. A special shout out goes to our summer intern Han Zheng as a notable lead contributor to the work. Further, qBraid would like to thank our collaborators, Gokul Subramanian Ravi, Hanrui Wang, and Fredrick Chong.
Key Results (taken directly from paper):
- Architecture Design: SnCQA architectures based on theoretical foundation established in [17],[23] in the QAOA (Quantum Alternating Approximation Algorithm) form, and design their hardware-efficient version. We show that the hardware-efficient versions are implementable in the near-term quantum devices.
- Resource benchmarks: suggest that compared to pHEA (pure hardware-efficient ansatz) SnCQA could save from 200% to 1000% hardware resources with comparable performance.
- Noise resilience: We benchmark the performance ofSnCQA with shot noises simulated using IBM Qiskit [26] and qBraid [27]. We find that SnCQA is sufficiently noise resilient in our cases even with significant amount of shot noises.
- Theoretical advantages: We present theoretical arguments favoring SnCQA, including quantum neural tangent kernel [28]–[31], universality [17], quantum advantage [23], decoherence-free subspaces [32]–[34] and saddle-point avoidance [35].
Read more about the work here.
About qBraid:
qBraid is a leading quantum computing software startup focused on developing innovative solutions for quantum algorithm design and optimization. By leveraging the power of quantum computing, qBraid aims to accelerate advancements in various fields, including chemistry, materials science, machine learning, and more.
Collaborations
5
Min read
As an early adopter of the NVIDIA GH200 Grace Hopper Superchip systems, qBraid provides unparalleled access to today’s most advanced computing technologies.
Press Releases
5
Min read
qBraid will lead a team of researchers from MIT, UChicago, Argonne National Laboratory, and QuEra to develop quantum computing solutions for studying the interaction of metals and intrinsically disordered proteins.
Research
5
Min read
IEEE has awarded qBraid and its collaborators 1st place for the Best Paper Award in the Quantum Algorithm Track.
Collaborations
5
Min read
As an early adopter of the NVIDIA GH200 Grace Hopper Superchip systems, qBraid provides unparalleled access to today’s most advanced computing technologies.
Collaborations
1
Min read
Explore the advantages of cloud-based quantum computing and how it is revolutionizing research and development across various industries
Collaborations
1
Min read
Discover how quantum computing is revolutionizing enterprises, from enhancing cybersecurity with quantum encryption to optimizing complex logistics and supply chain operations.
Collaborations
5
Min read
qBraid’s quantum computing platform adds access to 256 qubit neutral atom quantum computer, Aquila by QuEra.
Collaborations
4
Min read
The qBraid platform will allow users to play with Pulser in a matter of a few minutes.
Collaborations
5
Min read
qBraid and Quantum Algorithms Institute partner to accelerate the pace of quantum computing in British Columbia and beyond
Hackathons
5
Min read
As part of QHack, qBraid is providing the best quantum developer notebook environment experience for challengers.
Hackathons
10
Min read
From October 21st to November 5th of 2022, qBraid hosted HAQS, one of the most popular quantum computing events of the year, where participants from around the world worked on solving a total of five quantum computing challenges during the two weeks of the event.
Hackathons
5
Min read
At this year's QCHack, participants attended a week filled with amazing talks, 1:1 sessions with academic and industry mentors, and a 24 hour hackathon hosted by Stanford, Yale and Berkeley.
Hackathons
4
Min read
The potential of the field of quantum computing is so huge that everyone in the field cannot wait for all the promises that the field holds to become a reality.
Research
5
Min read
IEEE has awarded qBraid and its collaborators 1st place for the Best Paper Award in the Quantum Algorithm Track.
Research
1
Min read
qBraid's team used hybrid classical-quantum algorithms to determine the best flight path
Research
1
Min read
Learn how classical sampling methods, such as Markov Chain Monte Carlo, can estimate truncation errors in simulating bosons on quantum computers, aiding resource assessment and result validation for quantum simulations, including applications in two-dimensional lattice scalar field theory.
Press Releases
Min read
Our first cohort of the qBraid Alliance, a partnership with student organizations at leading universities around the country.
Press Releases
5
Min read
Coming from IBM Quantum Lab? Learn how to start using qBraid Lab
Press Releases
10
Min read
The Bloch develops quantum technology solutions for society’s most pressing problems by accelerating industry adoption to drive research commercialization, catapulting US leadership in quantum information science and technology.
Press Releases
5
Min read
Our newest podcast series
Press Releases
5
Min read
qBraid will lead a team of researchers from MIT, UChicago, Argonne National Laboratory, and QuEra to develop quantum computing solutions for studying the interaction of metals and intrinsically disordered proteins.
Press Releases
Min read
OSU uses qBraid for accessing Intel Quantum SDK
Press Releases
5
Min read
qBraid provides agnostic connections to quantum computers and simulators thanks to Amazon Braket
Press Releases
10
Min read
Duality Quantum Accelerator Accepts Six Startups into Inaugural Cohort
Press Releases
1
Min read
Take the QuBes (Quantum Beginners) course to learn quantum computing.
Press Releases
5
Min read
qBraid aims to increase accessibility to, and interoperability amongst, quantum computing resources.
Product
5
Min read
Accelerating hybrid workflows using Pennylane's embedded simulators with NVIDIA GPUs on qBraid Lab.
Product
5
Min read
Here are 3 ways to install python packages on qBraid
Product
2
Min read
How to install Cirq v1.2.0 environment on qBraid Lab
Product
1
Min read
Let qBraid help you take your first step into the quantum world!
Product
1
Min read
Intel® Quantum SDK is generally available on qBraid Lab for Free with no installation necessary
Product
1
Min read
Dive into the intricate interplay of the Bernoulli line and the Bloch sphere, revealing profound geometric insights into quantum state dynamics.
Create a free qBraid account to have the entire quantum ecosystem at your fingertips