On the character of the superconductor to metal transition in overdoped cuprates

Dependence of the critical temperature in overdoped copper oxides on superfluid density.
Authors: I. Bozovic, X. He, J. Wu, and A. T. Bollinger.
Nature 536, 309 (2016)

Recommended with a commentary by Steven A. Kivelson, Stanford University.
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DOI: 10.36471/JCCM_August_2016_01
https://doi.org/10.36471/JCCM_August_2016_01

Information capacity of specific interactions

Information capacity of specific interactions.
Authors: M. H. Huntley, A. Murugan, and M. P. Brenner.
PNAS 113, 58415846 (2016)

Recommended with a commentary by Andrea Liu, University of Pennsylvania.
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DOI: 10.36471/JCCM_August_2016_02
https://doi.org/10.36471/JCCM_August_2016_02

Capacitive probes of broken symmetries in bilayer graphene

Competing valley, spin, and orbital symmetry breaking in bilayer graphene.
Authors: B.M. Hunt, J.I.A. Li, A.A. Zibrov, L. Wang, T. Taniguchi, K. Watanabe, J. Hone, C.R. Dean, M. Zaletel, R.C. Ashoori, and A.F. Young.
arXiv:1607.0646v1

Recommended with a commentary by S. A. Parameswaran, University of California, Irvine.
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DOI: 10.36471/JCCM_August_2016_03
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Spin and charge correlations in the Hubbard model: a cold atoms perspective

1. Site-resolved observations of antiferromagnetic correlations in the Hubbard model.
Authors: M. F. Parsons, A. Mazurenko, C.S. Chiu, G. Ji, D. Greif, and M. Greiner.
arXiv:1605.02704

2. Spin and Charge Resolved Quantum Gas Microscopy of Antiferromagnetic Order in Hubbard Chains.
Authors:Martin Boll, Timon A. Hilker, Guillaume Salomon, Ahmed Omran, Immanuel Bloch, and Christian Gross.
arXiv:1605.05661

Recommended with a commentary by Thierry Giamarchi, DQMP, University of Geneva.
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DOI: 10.36471/JCCM_July_2016_01
https://doi.org/10.36471/JCCM_July_2016_01

Towards a Unified Description of the Electronic Orders in Iron-Based Superconductors: Insights from FeSe

1. Magnetic ground state of FeSe.
Authors: Qisi Wang, Yao Shen, Bingying Pan, Xiaowen Zhang, K. Ikeuchi, K. Iida, A. D. Christianson, H. C. Walker, D. T. Adroja, M. Abdel-Hafiez, Xiaojia Chen, D. A. Chareev, A. N. Vasiliev, Jun Zhao.
Nature Communications 7, 12182 (2016)

2. Unlocked Stripe-order Antiferromagnetism in FeSe under Pressure.
Authors:P. Wang, S. Sun, Y. Cui, W. Song, T. Li, Rong Yu, Hechang Lei, Weiqiang Yu.
arXiv:1603.04589

3. Strong cooperative coupling of pressure-induced mag- netic order and nematicity in FeSe.
Authors:K. Kothapalli, A. E. Böhmer, W. T. Jayasekara, B. G. Ueland, P. Das, A. Sapkota, V. Taufour, Y. Xiao, E. E. Alp, S. L. Bud’ko, P. C. Canfield, A. Kreyssig, A. I. Goldman.
arXiv:1603.04135

Recommended with a commentary by Qimiao Si, Rice University.
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DOI: 10.36471/JCCM_July_2016_02
https://doi.org/10.36471/JCCM_July_2016_02

Spontaneous oscillations in quantum systems

Floquet Time Crystals.
Authors: Dominic V. Else, Bela Bauer, and Chetan Nayak.
arXiv:1603.08001

Recommended with a commentary by Leon Balents, UCSB.
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DOI: 10.36471/JCCM_June_2016_01
https://doi.org/10.36471/JCCM_June_2016_01

Towards Quantum Simulations

1. Elucidating Reaction Mechanisms on Quantum Computers.
Authors: Markus Reiher, Nathan Wiebe, Krysta M. Svore, Dave Wecker, and Matthias Troyer.
arXiv:1605.03590

2. Nitrogenase: A Draft Mechanism.
Authors: Brian M. Hoffman, Dmitriy Lukoyanov, Dennis R. Dean, and Lance C. Seefeld.
Acc. Chem. Res. 2013 Feb 19; 46(2): 587595.

Recommended with a commentary by David DiVincenzo, RWTH Aachen, FZ Juelich.
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DOI: 10.36471/JCCM_June_2016_02
https://doi.org/10.36471/JCCM_June_2016_02

Fluctuation-Reponse Theorem for the Active Noisy Oscillator of the Hair-Cell Bundle

Fluctuation-Reponse Theorem for the Active Noisy Oscillator of the Hair-Cell Bundle.
Authors: L. Dinis, P. Martin, J. Barral, J. Prost, and J.F. Joanny.
Physical Review Letters 109, 160602 (2012)

Recommended with a commentary by Alex Levine, UCLA.
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DOI: 10.36471/JCCM_June_2016_03
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Search for Majoranas: a new piece of the puzzle

Exponential Protection of Zero Modes in Majorana Islands.
Authors: S. M. Albrecht, A. P. Higginbotham, M. Madsen, F. Kuemmeth, T. S. Jespersen, J. Nygard, P. Krogstrup, and C. M. Marcus.
Nature 531, 206 (2016)

Recommended with a commentary by Anton Akhmerov, Delft University.
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DOI: 10.36471/JCCM_May_2016_01
https://doi.org/10.36471/JCCM_May_2016_01

Rouse polymer dynamics in viscoelastic media

Physical Modeling of Dynamic Coupling between Chromosomal Loci
Authors: T.J. Lampo, A.S. Kennard, and A.J. Spakowitz
Biophysical Journal, 110, p. 338, 2016

Recommended with a commentary by Michael Tamm, Moscow State University.
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DOI: 10.36471/JCCM_May_2016_02
https://doi.org/10.36471/JCCM_May_2016_02

Transparent photovoltaics

1. Organic Salts as a Route to Energy Level Control in Low Bandgap, High Open-Circuit Voltage Organic and Transparent Solar Cells that Approach the Excitonic Voltage Limit.
Authors: John Suddard-Bangsund, Christopher J. Traverse, Margaret Young, Tyler J. Patrick, Yimu Zhao , and Richard R. Lunt.
Adv. Energy Mater, 6, 1501659 (2015)

2. Transparent Luminescent Solar Concentrators for Large-Area Solar Windows Enabled by Massive Stokes-Shift Nanocluster Phosphors.
Authors: Yimou Zhao and Richard R. Lunt.
Adv. Energy Mater. 3, 1143–1148 (2013)

Recommended with a commentary by Albert Migliori, Los Alamos National laboratory.
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DOI: 10.36471/JCCM_May_2016_03
https://doi.org/10.36471/JCCM_May_2016_03

Topological magnetoelectric effect versus quantum Faraday effect

1. Observation of topological Faraday and Kerr rotations in quantum anomalous Hall state by terahertz magneto-optics.
Authors: K.N. Okada, Y. Takahashi, M. Mogi, R. Yoshimi, A. Tsukazaki, K.S. Takahashi, N. Ogawa, M. Kawasaki, and Y. Tokura
arXiv:1603.02113

2. Quantized Faraday and Kerr rotation and axion electrodynamics of the surface states of three-dimensional topological insulators.
Authors: L. Wu, M. Salehi, N. Koirala, J. Moon, S. Oh, and N.P. Armitage.
arXiv:1603.04317

3. Observation of the universal magnetoelectric effect in a 3D topological insulator.
Authors: V. Dziom, A. Shuvaev, A. Pimenov, G.V. Astakhov, C. Ames, K. Bendias, J. Böttcher, G. Tkachov, E.M. Hankiewicz, C. Brüne, H. Buhmann, and L.W. Molenkamp.
arXiv:1603.05482

Recommended with a commentary by Carlo Beenakker, Leiden University.
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DOI: 10.36471/JCCM_April_2016_01
https://doi.org/10.36471/JCCM_April_2016_01

Cavity Quantum Spin Resonance

Controlling spin relaxation with a cavity.
Authors: A. Bienfait, J.J. Pla, Y. Kubo, X. Zhou, M. Stern, C.C. Lo, C.D. Weis, T. Schenkel, D. Vion, D. Esteve, J.J.L. Morton and P. Bertet.
Nature 531,74(2016)

Recommended with a commentary by Steven M. Girvin, Yale University.
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DOI: 10.36471/JCCM_April_2016_02
https://doi.org/10.36471/JCCM_April_2016_02

Knots in Polymers

Knots as a Topological Order Parameter for Semiflexible Polymers.
Authors: Martin Marenz and Wolfhard Janke.
Phys. Rev. Lett. 116,128301(2016)
arXiv:1506.07376

Recommended with a commentary by Kurt Kremer, Max Planck Institute for Polymer Research.
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DOI: 10.36471/JCCM_April_2016_03
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The hunt for the pairing glue in the cuprates

Quantitative determination of pairing interactions for high-temperature superconductivity in cuprates.
Authors: Jin Mo Bok, Jong Ju Bae, Han-Yong Choi, Chandra M. Varma, Wentao Zhang, Junfeng He, Yuxiao Zhang, Li Yu, and X.J. Zhou.
Science Advances, 2, E1501329, 2016
arXiv: 1601.02493

Recommended with a commentary by Andrey Chubukov, University of Minnesota.
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DOI: 10.36471/JCCM_March_2016_01
https://doi.org/10.36471/JCCM_March_2016_01

Closing the loopholes on Bell’s theorem

1. Loophole-free Bell inequality violation using electron spins separated by 1.3 kilometers.
Authors: B. Hensen, H. Bernien, A. E. Dréau, A. Roisterer, N. Kalb, M. S. Blok, J. Ruitenberg, R. F. L. Vermeulen, R. N. Schouten, C. Abelen, W. Amaya, V. Pruneri, M. W. Mitchell, M. Markham, D. J. Switchen, D. Elkouss, S. Wehner, T. H. Taminiau, and R. Hanson
Nature 526, 682–686 (2015)

2. Strong Loophole-Free Test of Local Realism.
Authors: L. Shalm et al.
Phys. Rev. Lett., 115, 250402 (2015)

3. Significant-loophole-free test of Bell’s theorem with entangled photons.
Authors: M. Giustina et al.
Phys. Rev. Lett., 115, 250401 (2015)

Recommended with a commentary by Anthony J. Leggett, University of Illinois.
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DOI: 10.36471/JCCM_March_2016_02
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From monolayer back to bulk FeSe-based high-temperature superconductors

1. Surface electronic structure and isotropic superconducting gap in (Li0.8Fe0.2)OHFeSe.
Authors: X.H. Niu, R. Peng, H.C. Xu, Y.J. Yan, J. Jiang, D.F. Xu, T.L. Yu, Q. Song, Z.C. Huang, Y.X. Wang, B. P. Xie, X. F. Lu, N. Z. Wang, X. H. Chen, Z. Sun, and D. L. Feng.
Phys. Rev. B 92, 060504 (2015)

2. Common electronic origin of superconductivity in (Li,Fe)OHFeSe bulk superconductor and single-layer FeSe/SrTiO3 films.
Authors: L. Zhao, A. Liang, D. Yuan, Y. Hu, D. Liu, J. Huang, S. He, B. Shen, Y. Xu, X. Liu, L. Yu, G. Liu, H. Zhou, Y. Huang, X. Dong, F. Zhou, K. Liu, Z. Lu, Z. Zhao, C. Chen, Z. Xu and X. J. Zhou.
Nat. Commun. 7, 10608 (2016)

Recommended with a commentary by Atsushi Fujimori, University of Tokyo.
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DOI: 10.36471/JCCM_February_2016_01
https://doi.org/10.36471/JCCM_February_2016_01

Soft Matter at the nanoscale constitutes an information-transporting medium

1. Allosteric Dynamic Control of Binding.
Authors: F. Sumbul, S.A.E. Acuner-Ozbabacan and T. Haliloglu.
Biophys. J., 109, 1190-1201 (2015)

2. Quantifying information transfer by protein domains: Analysis of the Fyn. SH2 domain structure
Authors: T. Lenaerts, J. Ferkinghoff-Borg, F. Stricher, L. Serrano, J. W. H. Schymkowitz and F. Rousseau.
BMC Structural Biology, 8:43 (2008)

Recommended with a commentary by Tom McLeish, Durham University.
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DOI: 10.36471/JCCM_February_2016_02
https://doi.org/10.36471/JCCM_February_2016_02

Optical second harmonic generation reveals hidden odd-parity order in Sr2IrO4

Evidence of an odd-parity hidden order in a spin-orbit coupled correlated iridate.
Authors: L. Zhao, D. H. Torchinsky, H. Chu, V. Ivanov, R. Lifshitz, R. Flint, T. Qi, G. Cao and D. Hsieh.
Nature Phys. 12, 32 (2016)

Recommended with a commentary by Joseph Orenstein, Department of Physics, UC Berkeley.
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DOI: 10.36471/JCCM_February_2016_03
https://doi.org/10.36471/JCCM_February_2016_03

Frank Kasper Phases of Squishable Spheres and Optimal Cell Models

1.Selective assemblies of giant tetrahedra via precisely controlled interactions.
Authors: M. Huang, C.H. Hsu, J. Wang, S. Mei, X. Dong, Y. Li, M. Li, H. Liu, W. Zhang, T. Aida, W.B. Zhang, K. Yue and S. Z. D. Cheng.
Science 348, 424(2015)

2.Sphericity and symmetry breaking in the formation of Frank-Kasper phases from one component materials.
Authors: S. Lee, C. Lieghton and F. S. Bates.
Proc. Nat. Acad. Sci. USA 111, 17723(2014)

3.? phase formed in conformationally asymmetric AB-type block copolymers.
Authors: N. Xie, W. Li, F. Qui, A.C. Shi.
ACS MacroLetters 3, 906(2014)

Recommended with a commentary by Gregory M. Grason, Polymer Science and Engineering, UMass Amherst.
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DOI: 10.36471/JCCM_January_2016_01
https://doi.org/10.36471/JCCM_January_2016_01

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