I am excited to share https://t.co/mIcORmuFaF.
We first set out to demonstrate real-time feedforward operations by encoding a magic state. But then we found the encoded state we prepared had better fidelity than if we had prepared it on a pair of physical qubits on the device.
I'm really excited for this work to come out demonstrating the capabilities of our hardware at #ibmquantum. This was run with capabilities accessible to all https://t.co/3ZeGWUfUxt
I am excited to share https://t.co/mIcORmuFaF.
We first set out to demonstrate real-time feedforward operations by encoding a magic state. But then we found the encoded state we prepared had better fidelity than if we had prepared it on a pair of physical qubits on the device.
@BSiegelwax has published an excellent article series on getting started with dynamic circuits on IBM quantum hardware. Exciting to see outside takes on the product you build, especially in a field that is new and many of the best practices are still being created. #qiskit
Check out this awesome quantum chip design system https://t.co/RrtNHRoBPd that just launched for early release by @zlatko_minev and team. Back in school, I was just trying to jerry-rig all of these methods, but now they're tired together in one nice package. @qiskit@IBMResearch
Upcoming circuit sessions I'm hosting this Wednesday. https://t.co/xen73ly9bq
This is a last minute replacement so I would be happy to spend sometime answering questions as they come in and some more after the presentation.
#Qiskit#QuantumComputing#IBMQ
@QTL_Chalmers@qiskit We have lots of new features in the pipeline that will sit on top of Qiskit such as an experiment calibration pipeline that will live in Ignis.
@QTL_Chalmers@qiskit This is really cool, congratulations on putting this together and preparing for release @QTL_Chalmers! Looking forward to seeing what we can do @qiskit to help you build your quantum computers and together push forward quantum computing!