510 citations
- University of WalesGB49 papers
- University of LiverpoolGB18 papers
- Beijing Normal UniversityCN15 papers
- The University of TokyoJP14 papers
- National University of Ireland, MaynoothIE13 papers
- Sejong UniversityKR13 papers
- Trinity College DublinIE13 papers
- Universidade de Santiago de CompostelaES12 papers
- Bielefeld UniversityDE11 papers
- University of RostockDE11 papers
- Aarhus UniversityDK10 papers
- Centre National de la Recherche ScientifiqueFR10 papers
11 papers · 1 filter
Analyzing and Unifying Robustness Measures for Excitation Transfer Control in Spin Networks
S. P. O'Neil, I. Khalid, A. A. Rompokos +4
Recent achievements in quantum control have resulted in advanced techniques for designing controllers for applications in quantum communication, computing, and sensing. However, th…
Design and Experimental Performance of Local Entanglement Witness Operators
David Amaro, Markus Müller
Entanglement is a central concept in quantum information and a key resource for many quantum protocols. In this work we propose and analyze a class of entanglement witnesses that d…
Born's rule yields classical states and classical mechanics
Timothy J. Hollowood
It is shown that Schrodinger's equation and Born's rule are sufficient to ensure that the states of macroscopic collective coordinate subsystems are microscopically localized in ph…
Spectral analysis and parameter estimation in levitated optomechanics
Chris Dawson, James Bateman
Optical levitation of nanoscale particles has emerged as a platform for precision measurement. Extremely low damping, together with optical interferometric position detection, make…
Structured singular value analysis for spintronics network information transfer control
Edmond A. Jonckheere, Sophie G. Schirmer, Frank C. Langbein
Control laws for selective transfer of information encoded in excitations of a quantum network, based on shaping the energy landscape using time-invariant, spatially-varying bias f…
Experimental Realisation of a Thermal Squeezed State of Levitated Optomechanics
Muddassar Rashid, Tommaso Tufarelli, James Bateman +4
We experimentally squeeze the thermal motional state of an optically levitated nanosphere, by fast switching between two trapping frequencies. The measured phase space distribution…