######################### Experimental capabilities ######################### .. toctree:: :maxdepth: 1 ***************************************************************************************************************************************************************************************************************************** `Dynamic Circuits on Qiskit with Amazon Braket `_ ***************************************************************************************************************************************************************************************************************************** This tutorial shows how we can use the qiskit-braket-provider to run dynamic circuits on IQM using the Amazon Braket service. **************************************************************************************************************************************************************************************************************** `Getting Started with Dynamic Circuits on IQM `_ **************************************************************************************************************************************************************************************************************** This tutorial introduces experimental support for dynamic circuits on IQM Garnet, including support for mid-circuit measurements and feedforward control, as well as recommended practices and capabilities of the service. ********************************************************************************************************************************************************************************************** `Dynamic Circuit Constructions `_ ********************************************************************************************************************************************************************************************** This tutorial introduces basic tools and primitives for building more sophisticated dynamic quantum circuits. These include teleportation tools, PARITY gates, and a gate teleportation protocol for realizing remote CNOT applications. ************************************************************************************************************************************************************************************************************ `Handling Noise with Dynamic Circuits `_ ************************************************************************************************************************************************************************************************************ This tutorial shows how you can harness and mitigate errors with dynamic circuits. The tutorial includes an entanglement stabilization with Bell states and dynamic circuits example, as well as a readout error mitigation example for mid-circuit measurements. ******************************************************************************************************************************************************************************************************* `Open Quantum Systems with Dynamic Circuits `_ ******************************************************************************************************************************************************************************************************* This tutorial shows how dynamic circuits can be used for creating and applying open quantum system operators, including an ampltiude damping example, as well as a mixed state preparation for ensemble state optimization. ************************************************************************************************************************************************************************************************************************* `Dynamic Circuits with OpenQASM 3.0 on Amazon Braket `_ ************************************************************************************************************************************************************************************************************************* This tutorial shows how we can specify experimental dynamic circuit instructions using OpenQASM 3.0 on Amazon Braket.