Highlights

Strongly Deterministic Population Dynamics in Closed Microbial Communities

Zak Frentz, Seppe Kuehn, and Stanislas Leibler

Phys. Rev. X 5, 041014 (2015) - Published 26 October, 2015

High-resolution tracking of the population abundances in a simple, closed microbial ecosystem shows that the intrinsic dynamics of the system are strongly deterministic.

Extractable Work from Correlations

Martí Perarnau-Llobet, Karen V. Hovhannisyan, Marcus Huber, Paul Skrzypczyk, Nicolas Brunner, and Antonio Acín

Phys. Rev. X 5, 041011 (2015) - Published 22 October, 2015

Quantum effects such as coherence and entanglement increase a system’s ability to store energy.

Resource Costs for Fault-Tolerant Linear Optical Quantum Computing

Ying Li, Peter C. Humphreys, Gabriel J. Mendoza, and Simon C. Benjamin

Phys. Rev. X 5, 041007 (2015) - Published 14 October, 2015

A theoretical analysis quantifies the technical resources required to build a quantum computer based on photons.

Pulsed Excitation Dynamics of an Optomechanical Crystal Resonator near Its Quantum Ground State of Motion

Seán M. Meenehan, Justin D. Cohen, Gregory S. MacCabe, Francesco Marsili, Matthew D. Shaw, and Oskar Painter

Phys. Rev. X 5, 041002 (2015) - Published 6 October, 2015

A crystal cavity for light and sound has been chilled close to its motional ground state.

From Gyroscopic to Thermal Motion: A Crossover in the Dynamics of Molecular Superrotors

A. A. Milner, A. Korobenko, K. Rezaiezadeh, and V. Milner

Phys. Rev. X 5, 031041 (2015) - Published 23 September, 2015

Fast-rotating molecules spun up by a laser pulse maintain their alignment despite collisions.

Universal Quantum Transducers Based on Surface Acoustic Waves

M. J. A. Schuetz, E. M. Kessler, G. Giedke, L. M. K. Vandersypen, M. D. Lukin, and J. I. Cirac

Phys. Rev. X 5, 031031 (2015) - Published 10 September, 2015

Surface acoustic waves may work as a “quantum bus” that carries information to different parts of a quantum computer.

Practical Security Bounds Against the Trojan-Horse Attack in Quantum Key Distribution

M. Lucamarini, I. Choi, M. B. Ward, J. F. Dynes, Z. L. Yuan, and A. J. Shields

Phys. Rev. X 5, 031030 (2015) - Published 9 September, 2015

Researchers propose an approach to safeguard optical quantum key distribution systems against Trojan-horse attacks.

Diffusion through Bifurcations in Oscillating Nano- and Microscale Contacts: Fundamentals and Applications

Ming Ma, Igor M. Sokolov, Wen Wang, Alexander E. Filippov, Quanshui Zheng, and Michael Urbakh

Phys. Rev. X 5, 031020 (2015) - Published 21 August, 2015

An oscillatory motion dramatically reduces the number of contaminant molecules at the interface between two surfaces.

Experimental Discovery of Weyl Semimetal TaAs

B. Q. Lv, H. M. Weng, B. B. Fu, X. P. Wang, H. Miao, J. Ma, P. Richard, X. C. Huang, L. X. Zhao, G. F. Chen, Z. Fang, X. Dai, T. Qian, and H. Ding

Phys. Rev. X 5, 031013 (2015) - Published 31 July, 2015

Weyl fermions possess exotic properties and can act like magnetic monopoles. Researchers show that TaAs is a Weyl semimetal, demonstrating for the first time that Weyl semimetals can be identified experimentally.

Ultrafast Polariton-Phonon Dynamics of Strongly Coupled Quantum Dot-Nanocavity Systems

Kai Müller, Kevin A. Fischer, Armand Rundquist, Constantin Dory, Konstantinos G. Lagoudakis, Tomas Sarmiento, Yousif A. Kelaita, Victoria Borish, and Jelena Vučković

Phys. Rev. X 5, 031006 (2015) - Published 16 July, 2015

With the assistance of lattice vibrations, quantum dots perform as single-photon emitters.

Broadband Reflectionless Metasheets: Frequency-Selective Transmission and Perfect Absorption

V. S. Asadchy, I. A. Faniayeu, Y. Ra’di, S. A. Khakhomov, I. V. Semchenko, and S. A. Tretyakov

Phys. Rev. X 5, 031005 (2015) - Published 14 July, 2015

An array of helical elements absorbs radiation of a certain frequency while casting no shadow in light over a range of other frequencies.

Topological Polaritons

Torsten Karzig, Charles-Edouard Bardyn, Netanel H. Lindner, and Gil Refael

Phys. Rev. X 5, 031001 (2015) - Published 1 July, 2015

Quasiparticles dubbed topological polaritons make their debut in the theoretical world.

Strong-Field Physics with Mid-IR Fields

Benjamin Wolter, Michael G. Pullen, Matthias Baudisch, Michele Sclafani, Michaël Hemmer, Arne Senftleben, Claus Dieter Schröter, Joachim Ullrich, Robert Moshammer, and Jens Biegert

Phys. Rev. X 5, 021034 (2015) - Published 26 June, 2015

New sources and detectors allow atomic and molecular structure to be studied at mid-infrared wavelengths, where interpreting experiments is more straightforward.

Colossal Proximity Effect in a Superconducting Triplet Spin Valve Based on the Half-Metallic Ferromagnet CrO2

A. Singh, S. Voltan, K. Lahabi, and J. Aarts

Phys. Rev. X 5, 021019 (2015) - Published 26 May, 2015

Combining the qualities of superconductors and ferromagnets allows for the creation of new superconducting electronics. Cooper pairs in superconductors—which do not possess spin—can be altered to have spin using a special ferromagnet.

Crossing the Resolution Limit in Near-Infrared Imaging of Silicon Chips: Targeting 10-nm Node Technology

Krishna Agarwal, Rui Chen, Lian Ser Koh, Colin J. R. Sheppard, and Xudong Chen

Phys. Rev. X 5, 021014 (2015) - Published 6 May, 2015

A near-infrared microscopy technique can detect defects in electronic devices with a resolution better than the diffraction limit of light.

Analytical Computation of the Epidemic Threshold on Temporal Networks

Eugenio Valdano, Luca Ferreri, Chiara Poletto, and Vittoria Colizza

Phys. Rev. X 5, 021005 (2015) - Published 8 April, 2015

A new model can compute when a spreading disease triggers an epidemic within a network that varies with time.

Quantum Coherence, Time-Translation Symmetry, and Thermodynamics

Matteo Lostaglio, Kamil Korzekwa, David Jennings, and Terry Rudolph

Phys. Rev. X 5, 021001 (2015) - Published 1 April, 2015

Quantum mechanics and thermodynamics are fundamental fields of physics. Scientists show how the processing of quantum coherence is constrained by the laws of thermodynamics.

Spin-Orbit Coupling for Photons and Polaritons in Microstructures

V. G. Sala, D. D. Solnyshkov, I. Carusotto, T. Jacqmin, A. Lemaître, H. Terças, A. Nalitov, M. Abbarchi, E. Galopin, I. Sagnes, J. Bloch, G. Malpuech, and A. Amo

Phys. Rev. X 5, 011034 (2015) - Published 25 March, 2015

Photons confined to a hexagonally shaped microcavity move in a polarization-dependent way, thus simulating a spin-orbit coupling common in materials.

Quantifying Selective Pressures Driving Bacterial Evolution Using Lineage Analysis

Guillaume Lambert and Edo Kussell

Phys. Rev. X 5, 011016 (2015) - Published 17 February, 2015

A new approach is able to quantify the environmental effects on an evolving organism by analyzing just a small number of surviving individuals.

Ideal Negative Measurements in Quantum Walks Disprove Theories Based on Classical Trajectories

Carsten Robens, Wolfgang Alt, Dieter Meschede, Clive Emary, and Andrea Alberti

Phys. Rev. X 5, 011003 (2015) - Published 20 January, 2015

An atom’s walk in an optical lattice is used to test a key principle of quantum physics.

Sign In to Your Journals Account

Filter

Filter

Article Lookup

Enter a citation