9 papers · 1 filter
Centralizing Task-based Approach to Quantum Network Control
Alexander Pirker, Robert J. Hayek, Alexander Kolar +3
For the last decade, layered stacks have dominated the way of reasoning about architectures for quantum networks. However, layered architectures impose stringent design and timing…
Addressing a device in a quantum network: A quantum approach including routing
Alexander Pirker
In this work we propose an addressing scheme for quantum networks which relies on quantum states held by devices. Quantum network devices use their address state together with a re…
Flexible Qubit Allocation of Network Resource States
Francesco Mazza, Jorge Miguel-Ramiro, Jessica Illiano +4
The Quantum Internet is still in its infancy, yet identifying scalable and resilient quantum network resource states is an essential task for realizing it. We explore the use of gr…
A resource-centric, task-based approach to quantum network control
Alexander Pirker, Belen Munoz, Wolfgang Dür
Quantum networks exhibit fundamental differences from their classical counterparts. These differences necessitate novel principles when organizing, managing, and operating them. He…
Graph state extraction from two-dimensional cluster states
Julia Freund, Alexander Pirker, Lina Vandré +1
We propose schemes to extract arbitrary graph states from two-dimensional cluster states by locally manipulating the qubits solely via single-qubit measurements. We introduce graph…
A quantum network stack and protocols for reliable entanglement-based networks
A. Pirker, W. Dür
We present a stack model for breaking down the complexity of entanglement-based quantum networks. More specifically, we focus on the structures and architectures of quantum network…