911 citations
- Max Planck Institute for Gravitational PhysicsDE44 papers
- Centre National de la Recherche ScientifiqueFR14 papers
- University of British ColumbiaCA14 papers
- Goddard Space Flight CenterUS13 papers
- Swinburne University of TechnologyAU13 papers
- University of Maryland, College ParkUS13 papers
- University of BirminghamGB12 papers
- University of Wisconsin–MilwaukeeUS12 papers
- Beijing Normal UniversityCN11 papers
- Cornell UniversityUS11 papers
- Eötvös Loránd UniversityHU11 papers
- Monash UniversityAU11 papers
24 papers · 1 filter
Adaptive time Compressed QITE (ACQ) and its geometrical interpretation
Alberto Acevedo Meléndez, Carmen G. Almudéver, Miguel Angel Garcia-March +8
Imaginary time evolution (ITE) is a well-established method for ground-state preparation, a fundamental problem in many fields such as materials science, chemistry, and optimizatio…
Scalable chip-based 3D ion traps
Elena Jordan, Malte Brinkmann, Alexandre Didier +8
Ion traps are used for a wide range of applications from metrology to quantum simulations and quantum information processing. Microfabricated chip-based 3D ion traps are scalable t…
Electric Field Distortions in Surface Ion Traps with Integrated Nanophotonics
Guochun Du, Elena Jordan, Tanja E. Mehlstäubler
The integration of photonic components into surface ion traps provides a scalable approach for trapped-ion quantum computing, sensing, and metrology, enabling compact systems with…
Squeezing Enhancement in Lossy Multi-Path Atom Interferometers
Julian Günther, Jan-Niclas Kirsten-SiemÃ, Naceur Gaaloul +1
This paper explores the sensitivity gains afforded by spin-squeezed states in atom interferometry, in particular using Bragg diffraction. We introduce a generalised input-output fo…
von Neumann measurement and quantum phase estimation of block-encoded Hamiltonians
S. E. Skelton
We review how to use von Neumann's measurement procedure to estimate a phase, using an efficient Hamiltonian simulation subroutine acts on a block-encoded Hamiltonian. We show that…
Hong-Ou-Mandel interference of more than 10 indistinguishable atoms
Martin Quensen, Mareike Hetzel, Luis Santos +4
When two indistinguishable bosons interfere at a beam splitter, they both exit through the same output port. This foundational quantum-mechanical phenomenon, known as the Hong-Ou-M…