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341
Two-color phase-controlled photoemission from a zero-dimensional nanostructure
Published 2019-01-01“…We demonstrate that multi-photon photoemission including above-threshold multiphoton orders from a nanotip can be coherently controlled with the optical phase between two light fields. …”
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342
Atomic spin-wave control and spin-dependent kicks with shaped subnanosecond pulses
Published 2020-12-01“…For a number of applications, it would be highly desirable to shape and coherently control the spatial waveform of the spin waves before spontaneous emission can occur. …”
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343
Coherent Manipulation of Orbital Feshbach Molecules of Two-Electron Atoms
Published 2019-02-01“…We also show the possibility to coherently control the molecular internal state by using Raman-assisted transfer to swap the nuclear spin of one of the atoms forming the molecule, thus demonstrating a powerful manipulation and detection tool of these molecular bound states. …”
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344
Partial coherence enhances parallelized photonic computing
Published 2024“…Advancements in optical coherence control1–5 have unlocked many cutting-edge applications, including long-haul communication, light detection and ranging (LiDAR) and optical coherence tomography6–8. …”
Journal article -
345
Partial coherence enhances parallelized photonic computing
Published 2024“…Advancements in optical coherence control have unlocked a plethora of cutting-edge applications, including long-haul communication, light detection and ranging, and optical coherence tomography. …”
Journal article -
346
Single-photon sources in diamond, silicon carbide and gallium nitride
Published 2019“…Secondly, the spin properties study of the single silicon vacancy in diamond: the silicon vacancy optical transition has been coherently controlled in the work. The optical Rabi oscillations in the time domain have been observed. …”
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347
Engineering spin squeezing in a 3D optical lattice with interacting spin-orbit-coupled fermions
Published 2019-11-01“…One of the most important tasks in modern quantum science is to coherently control and entangle many-body systems, and to subsequently use these systems to realize powerful quantum technologies such as quantum-enhanced sensors. …”
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348
Quantum entanglement and spin control in silicon nanocrystal.
Published 2012-01-01“…Selective coherence control and electrically mediated exchange coupling of single electron spin between triplet and singlet states using numerically derived optimal control of proton pulses is demonstrated. …”
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349
Quantum superpositions of causal orders as an operational resource
Published 2019-12-01“…Our first contribution is a formal definition for the specific notion of quantum control of causal orders, a stronger form of causal nonseparability—with the celebrated quantum switch as best-known example—where the causal orders of events for a target system are coherently controlled by a control system. We then build a resource theory—for both generic causal nonseparability as well as quantum control of causal orders—with a physically motivated class of free operations, based on process-matrix concatenations. …”
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350
Predictors of communication preferences in patients with chronic low back pain
Published 2013-10-01“…The patient questionnaire captured communication preferences, pain impact, pain intensity, and psychologic variables (fear avoidance beliefs, illness coherence, control beliefs, communication self-efficacy, and personality characteristics). …”
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351
White Laser Realized via Synergic Second- and Third-Order Nonlinearities
Published 2021-01-01“…White laser with balanced performance of broad bandwidth, high average and peak power, large pulse energy, high spatial and temporal coherence, controllable spectrum profile, and overall chroma are highly desirable in various fields of modern science. …”
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352
Theory and applications of ultracold atoms in optical superlattices
Published 2008“…<p>Optical lattices make it possible to trap and coherently control large ensembles of ultracold atoms. They provide the possibility to create lattice potentials that mimic the structure of solid-state systems, and to control these potentials dynamically. …”
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353
Measurement of quantum light pulses for enhanced precision sensing
Published 2018“…The ability to generate, coherently control and measure a variety of TF states of quantum light is therefore a necessary step towards implementing optical quantum technologies. …”
Thesis -
354