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Scientific Synergy between LSST and Euclid (2017)
Journal Article
Rhodes, J., Nichol, R. C., Aubourg, É., Bean, R., Boutigny, D., Bremer, M. N., …Linden, A. V. D. (2017). Scientific Synergy between LSST and Euclid. Astrophysical Journal Supplement, 233(2), Article 21. https://doi.org/10.3847/1538-4365/aa96b0

Euclid and the Large Synoptic Survey Telescope (LSST) are poised to dramatically change the astronomy landscape early in the next decade. The combination of high-cadence, deep, wide-field optical photometry from LSST with high-resolution, wide-field... Read More about Scientific Synergy between LSST and Euclid.

Electroweak Higgs production with HiggsPO at NLO QCD (2017)
Journal Article
Greljo, A., Isidori, G., Lindert, J. M., Marzocca, D., & Zhang, H. (2017). Electroweak Higgs production with HiggsPO at NLO QCD. The European Physical Journal C, 77(12), Article 838. https://doi.org/10.1140/epjc/s10052-017-5422-4

We present the HiggsPO UFO model for Monte Carlo event generation of electroweak VH and VBF Higgs production processes at NLO in QCD in the formalism of Higgs pseudo-observables (PO). We illustrate the use of this tool by studying the QCD corrections... Read More about Electroweak Higgs production with HiggsPO at NLO QCD.

The Time-domain Spectroscopic Survey: Target Selection for Repeat Spectroscopy (2017)
Journal Article
MacLeod, C., Green, P., Anderson, S., Eracleous, M., Ruan, J., Runnoe, J., …Waters, C. (2017). The Time-domain Spectroscopic Survey: Target Selection for Repeat Spectroscopy. Astronomical Journal, 155(1), Article 6. https://doi.org/10.3847/1538-3881/aa99da

As astronomers increasingly exploit the information available in the time domain, spectroscopic variability in particular opens broad new channels of investigation. Here we describe the selection algorithms for all targets intended for repeat spectro... Read More about The Time-domain Spectroscopic Survey: Target Selection for Repeat Spectroscopy.

Reducing biases on H0 measurements using strong lensing and galaxy dynamics: results from the eagle simulation (2017)
Journal Article
Tagore, A., Barnes, D., Jackson, N., Kay, S., Schaller, M., Schaye, J., & Theuns, T. (2018). Reducing biases on H0 measurements using strong lensing and galaxy dynamics: results from the eagle simulation. Monthly Notices of the Royal Astronomical Society, 474(3), 3403-3422. https://doi.org/10.1093/mnras/stx2965

Cosmological parameter constraints from observations of time-delay lenses are becoming increasingly precise. However, there may be significant bias and scatter in these measurements due to, among other things, the so-called mass-sheet degeneracy. To... Read More about Reducing biases on H0 measurements using strong lensing and galaxy dynamics: results from the eagle simulation.

Precise predictions for V+jets dark matter backgrounds (2017)
Journal Article
Lindert, J., Pozzorini, S., Boughezal, R., Campbell, J., Denner, A., Dittmaier, S., …Williams, C. (2017). Precise predictions for V+jets dark matter backgrounds. The European Physical Journal C, 77(12), Article 829. https://doi.org/10.1140/epjc/s10052-017-5389-1

High-energy jets recoiling against missing transverse energy (MET) are powerful probes of dark matter at the LHC. Searches based on large MET signatures require a precise control of the Z(νν¯)+Z(νν¯)+ jet background in the signal region. This can be... Read More about Precise predictions for V+jets dark matter backgrounds.

The interfacial nature of proximity-induced magnetism and the Dzyaloshinskii-Moriya interaction at the Pt/Co interface (2017)
Journal Article
Rowan-Robinson, R., Stashkevich, A., Roussigne, Y., Belmeguenai, M., Cherif, S., Thiaville, A., …Atkinson, D. (2017). The interfacial nature of proximity-induced magnetism and the Dzyaloshinskii-Moriya interaction at the Pt/Co interface. Scientific Reports, 7(1), Article 16835. https://doi.org/10.1038/s41598-017-17137-z

The Dzyaloshinskii-Moriya interaction has been shown to stabilise Nèel domain walls in magnetic thin films, allowing high domain wall velocities driven by spin current effects. The interfacial Dzyaloshinskii-Moriya interaction (IDMI) occurs at the in... Read More about The interfacial nature of proximity-induced magnetism and the Dzyaloshinskii-Moriya interaction at the Pt/Co interface.

The KMOS Cluster Survey (KCS). III. Fundamental Plane of Cluster Galaxies at z ≃ 1.80 in JKCS 041 (2017)
Journal Article
Prichard, L. J., Davies, R. L., Beifiori, A., Chan, J. C., Cappellari, M., Houghton, R. C., …Wegner, M. (2017). The KMOS Cluster Survey (KCS). III. Fundamental Plane of Cluster Galaxies at z ≃ 1.80 in JKCS 041. Astrophysical Journal, 850(2), Article 203. https://doi.org/10.3847/1538-4357/aa96a6

We present data for 16 galaxies in the overdensity JKCS 041 at $z\simeq 1.80$ as part of the K-band Multi-Object Spectrograph (KMOS) Cluster Survey (KCS). With 20 hr integrations, we have obtained deep absorption-line spectra from which we derived ve... Read More about The KMOS Cluster Survey (KCS). III. Fundamental Plane of Cluster Galaxies at z ≃ 1.80 in JKCS 041.

In search of a new era of UK X-ray astronomy (2017)
Journal Article
Gandhi, P., Degenaar, N., Done, C., & Watson, M. G. (2017). In search of a new era of UK X-ray astronomy. Astronomy and Geophysics, 58(6), 6.24-6.28. https://doi.org/10.1093/astrogeo/atx214

X-ray astronomy is our gateway to the hot universe. More than half of the baryons in the cosmos are too hot to be visible at shorter wavelengths. Studying the extreme environments of black hole and neutron star vicinities also requires X-ray data. Wi... Read More about In search of a new era of UK X-ray astronomy.

The Five-loop Beta Function for a General Gauge Group (2017)
Journal Article
Luthe, T., Maier, A., Marquard, P., & Schröder, Y. (2017). The Five-loop Beta Function for a General Gauge Group. Acta Physica Polonica B, 48(12), 2331-2340. https://doi.org/10.5506/aphyspolb.48.2331

We present results for the gluon field anomalous dimension in perturbative QCD and derive the corresponding Beta function at five-loop order. All given results are valid for a general gauge group.