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Small quantum networks in the qudit stabilizer formalism
Daniel Miller
How much noise can a given quantum state tolerate without losing its entanglement? For qudits of arbitrary dimension, I investigate this question for two noise models: Global white…
Comment on "Fully device-independent conference key agreement" [Phys. Rev. A 97, 022307 (2018)]
Timo Holz, Daniel Miller, Hermann Kampermann +1
In this manuscript we discuss the device-independent conference key agreement (DICKA) protocol [Phys. Rev. A 97, 022307 (2018)]. We show that the suggested honest implementation fa…
Parameter regimes for surpassing the PLOB bound with error-corrected qudit repeaters
Daniel Miller, Timo Holz, Hermann Kampermann +1
A potential quantum internet would open up the possibility of realizing numerous new applications, including provably secure communication. Since losses of photons limit long-dista…
2-D Compass Codes
Muyuan Li, Daniel Miller, Michael Newman +2
The compass model on a square lattice provides a natural template for building subsystem stabilizer codes. The surface code and the Bacon-Shor code represent two extremes of possib…
Propagation of generalized Pauli errors in qudit Clifford circuits
Daniel Miller, Timo Holz, Hermann Kampermann +1
It is important for performance studies in quantum technologies to analyze quantum circuits in the presence of noise. We introduce an error probability tensor, a tool to track gene…
Direct measurement of Bacon-Shor code stabilizers
Muyuan Li, Daniel Miller, Kenneth R. Brown
A Bacon-Shor code is a subsystem quantum error-correcting code on an lattice where the weight- stabilizers are usually inferred from the measurements of $…