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High-Precision Multiphoton Ionization of Accelerated Laser-Ablated Species

R. F. Garcia Ruiz, A. R. Vernon, C. L. Binnersley, B. K. Sahoo, M. Bissell, J. Billowes, T. E. Cocolios, W. Gins, R. P. de Groote, K. T. Flanagan, A. Koszorus, K. M. Lynch, G. Neyens, C. M. Ricketts, K. D. A. Wendt, S. G. Wilkins, and X. F. Yang

Phys. Rev. X 8, 041005 (2018) - Published 8 October, 2018

A modified version of a spectroscopic technique used at large-scale radioactive-ion-beam facilities could be used in tabletop experiments.

Resonant Absorption of Bosonic Dark Matter in Molecules

Asimina Arvanitaki, Savas Dimopoulos, and Ken Van Tilburg

Phys. Rev. X 8, 041001 (2018) - Published 2 October, 2018

A proposed class of dark-matter detectors will look for fluorescent photons emitted when bosonic dark-matter particles resonantly excite gas molecules.

Half-Collision Approach to Cold Chemistry: Shape Resonances, Elastic Scattering, and Radiative Association in the H++H and D++D Collision Systems

Maximilian Beyer and Frédéric Merkt

Phys. Rev. X 8, 031085 (2018) - Published 27 September, 2018

New experiments examine collisions between~protons and hydrogen atoms and deuterons and deuterium~atoms at very cold temperatures, leading to the determination of parameters relevant to the formation of the molecules H2+ and D2+ across a large temperature range.

Topological Phases of Non-Hermitian Systems

Zongping Gong, Yuto Ashida, Kohei Kawabata, Kazuaki Takasan, Sho Higashikawa, and Masahito Ueda

Phys. Rev. X 8, 031079 (2018) - Published 24 September, 2018

A new theoretical framework for topological phases provides the first systematic classification of non-Hermitian systems, those that exchange matter and energy with their environment.

Near-Ground-State Cooling of Atoms Optically Trapped 300 nm Away from a Hot Surface

Y. Meng, A. Dareau, P. Schneeweiss, and A. Rauschenbeutel

Phys. Rev. X 8, 031054 (2018) - Published 4 September, 2018

Atoms cooled to about one millionth of a degree above absolute zero in a nanophotonic trap provide a significant step toward unprecedented control over the atom-light interface in cold-atom systems.

Engineering a Flux-Dependent Mobility Edge in Disordered Zigzag Chains

Fangzhao Alex An, Eric J. Meier, and Bryce Gadway

Phys. Rev. X 8, 031045 (2018) - Published 17 August, 2018

A tunable transition between metallic and insulating states can appear in a lower-dimensional disordered environment, demonstrating how localization of quantum particles can be controlled through band-structure engineering.

Landau Effective Interaction between Quasiparticles in a Bose-Einstein Condensate

A. Camacho-Guardian and Georg M. Bruun

Phys. Rev. X 8, 031042 (2018) - Published 15 August, 2018

Bose-Einstein condensates could provide a platform for systematically studying elusive interactions among quasiparticles, extending quasiparticle theory to new and unexplored regimes.

Following the Birth of a Nanoplasma Produced by an Ultrashort Hard-X-Ray Laser in Xenon Clusters

Yoshiaki Kumagai et al.

Phys. Rev. X 8, 031034 (2018) - Published 2 August, 2018

A femtosecond-sensitive technique reveals the first steps in the creation of the nanoplasma that forms when a powerful x-ray pulse hits a nanoparticle.

Observation of Quantum Spin Noise in a 1D Light-Atoms Quantum Interface

J.-B. Béguin, J. H. Müller, J. Appel, and E. S. Polzik

Phys. Rev. X 8, 031010 (2018) - Published 12 July, 2018

A thinned nanowire provides a means for tightly confining 1000 ultracold cesium atoms, allowing for precise measurements of collective quantum fluctuations necessary for future quantum communication networks.

Observing the Space- and Time-Dependent Growth of Correlations in Dynamically Tuned Synthetic Ising Models with Antiferromagnetic Interactions

Vincent Lienhard, Sylvain de Léséleuc, Daniel Barredo, Thierry Lahaye, Antoine Browaeys, Michael Schuler, Louis-Paul Henry, and Andreas M. Läuchli

Phys. Rev. X 8, 021070 (2018) - Published 18 June, 2018

New experiments show the progressive build up of correlations in an array of 36 spins, revealing fundamental limits that constrain how quickly spin-based quantum simulators can be tuned.

Probing the Quench Dynamics of Antiferromagnetic Correlations in a 2D Quantum Ising Spin System

Elmer Guardado-Sanchez, Peter T. Brown, Debayan Mitra, Trithep Devakul, David A. Huse, Peter Schauß, and Waseem S. Bakr

Phys. Rev. X 8, 021069 (2018) - Published 18 June, 2018

New experiments explore quantum dynamics in a synthetic 2D magnet, an essential step for testing theoretical tools for calculating properties of nonequilibrium quantum systems against real world data.

Terahertz Streaking of Few-Femtosecond Relativistic Electron Beams

Lingrong Zhao, Zhe Wang, Chao Lu, Rui Wang, Cheng Hu, Peng Wang, Jia Qi, Tao Jiang, Shengguang Liu, Zhuoran Ma, Fengfeng Qi, Pengfei Zhu, Ya Cheng, Zhiwen Shi, Yanchao Shi, Wei Song, Xiaoxin Zhu, Jiaru Shi, Yingxin Wang, Lixin Yan, Liguo Zhu, Dao Xiang, and Jie Zhang

Phys. Rev. X 8, 021061 (2018) - Published 8 June, 2018

A new technique for time-stamping bunches of electrons with terahertz pulses allows the electron arrival time to be recorded with 1.5-fs accuracy, paving the way for greatly improved time resolution in apparatuses that probe ultrafast, atomic-scale processes.

Three-Boson Spectrum in the Presence of 1D Spin-Orbit Coupling: Efimov’s Generalized Radial Scaling Law

Q. Guan and D. Blume

Phys. Rev. X 8, 021057 (2018) - Published 1 June, 2018

A new theoretical analysis shows that the unique radial scaling law of the Efimov effect—in which three bosons form a sequence of uniquely related bound trios—survives in the presence of one-dimensional spin-orbit coupling even though multiple length scales exist in the system.

Transverse Space-Charge Field-Induced Plasma Dynamics for Ultraintense Electron-Beam Characterization

R. Tarkeshian, J. L. Vay, R. Lehe, C. B. Schroeder, E. H. Esarey, T. Feurer, and W. P. Leemans

Phys. Rev. X 8, 021039 (2018) - Published 10 May, 2018

A new method for measuring the charge density in a narrow beam of relativistic electrons promises a minimally invasive technique for characterizing and controlling beams in next-generation particle accelerators.

Frequency Measurements of Superradiance from the Strontium Clock Transition

Matthew A. Norcia, Julia R. K. Cline, Juan A. Muniz, John M. Robinson, Ross B. Hutson, Akihisa Goban, G. Edward Marti, Jun Ye, and James K. Thompson

Phys. Rev. X 8, 021036 (2018) - Published 9 May, 2018

The frequency stability of superradiant light emitted from an optical clock transition in cold strontium atoms surpasses that of active microwave atomic clocks, paving the way for a next generation of high-precision optical frequency references to be used outside the laboratory environment.

Coupling Thermal Atomic Vapor to Slot Waveguides

Ralf Ritter, Nico Gruhler, Helge Dobbertin, Harald Kübler, Stefan Scheel, Wolfram Pernice, Tilman Pfau, and Robert Löw

Phys. Rev. X 8, 021032 (2018) - Published 4 May, 2018

New experiments investigate the interaction between light and rubidium atoms in a slot waveguide, which could pave the way for more efficient coupling between light and atoms in on-chip atomic vapor cell applications.

Thermalization near Integrability in a Dipolar Quantum Newton’s Cradle

Yijun Tang, Wil Kao, Kuan-Yu Li, Sangwon Seo, Krishnanand Mallayya, Marcos Rigol, Sarang Gopalakrishnan, and Benjamin L. Lev

Phys. Rev. X 8, 021030 (2018) - Published 2 May, 2018

Experiments involving a magnetic quantum Newton’s cradle provide insights into how interacting quantum particles achieve thermal equilibrium.

Optical Trapping of Ion Coulomb Crystals

Julian Schmidt, Alexander Lambrecht, Pascal Weckesser, Markus Debatin, Leon Karpa, and Tobias Schaetz

Phys. Rev. X 8, 021028 (2018) - Published 1 May, 2018

A single laser ion trap confines six ions without additional confinement fields, paving the way for studies of the dynamics within Coulomb crystals that are masked by traditional trapping techniques.

Quantum Simulation of the Quantum Rabi Model in a Trapped Ion

Dingshun Lv, Shuoming An, Zhenyu Liu, Jing-Ning Zhang, Julen S. Pedernales, Lucas Lamata, Enrique Solano, and Kihwan Kim

Phys. Rev. X 8, 021027 (2018) - Published 30 April, 2018

A quantum simulation of the quantum Rabi model (a simple, fundamental model of light-matter interactions) in a single trapped ion enables a detailed exploration of the model, including phenomena not previously accessible to experiments.

A Rapidly Expanding Bose-Einstein Condensate: An Expanding Universe in the Lab

S. Eckel, A. Kumar, T. Jacobson, I. B. Spielman, and G. K. Campbell

Phys. Rev. X 8, 021021 (2018) - Published 19 April, 2018

The rapid expansion of a Bose-Einstein condensate can mimic the expansion of the Universe.

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