Novel aspects of direct laser acceleration of relativistic electronsArefiev, A. V.; Robinson, A. P. L.; Khudik, V. N., JOURNAL OF PLASMA PHYSICS,
81, 475810404, (2015).
DOI:
10.1017/S0022377815000434.
Refraction index of shock compressed water in the megabar pressure rangeBatani, D.; Jakubowska, K.; Benuzzi-Mounaix, A.; Cavazzoni, C.; Danson, C.; Hall, T.; Kimpel, M.; Neely, D.; Pasley, J.; Le Gloahec, M. Rabec; Telaro, B., EPL,
112, 36001, (2015).
DOI:
10.1209/0295-5075/112/36001.
Role of low temperature resistivity on fast electron transport in disordered aluminium and copperBlackman, David R.; Robinson, A. P. L.; Pasley, John, PHYSICS OF PLASMAS,
22, 83108, (2015).
DOI:
10.1063/1.4928112.
Weak collisionless shocks in laser-plasmasCairns, R. A.; Bingham, R.; Trines, R. G. M.; Norreys, P., PLASMA PHYSICS AND CONTROLLED FUSION,
57, 44008, (2015).
DOI:
10.1088/0741-3335/57/4/044008.
Mitigating the relativistic laser beam filamentation via an elliptical beam profileHuang, T. W.; Zhou, C. T.; Robinson, A. P. L.; Qiao, B.; Zhang, H.; Wu, S. Z.; Zhuo, H. B.; Norreys, P. A.; He, X. T., PHYSICAL REVIEW E,
92, 53106, (2015).
DOI:
10.1103/PhysRevE.92.053106.
Quantitative single shot and spatially resolved plasma wakefield diagnosticsKasim, Muhammad Firmansyah; Holloway, James; Ceurvorst, Luke; Levy, Matthew C.; Ratan, Naren; Sadler, James; Bingham, Robert; Burrows, Philip N.; Trines, Raoul; Wing, Matthew; Norreys, Peter, PHYSICAL REVIEW SPECIAL TOPICS-ACCELERATORS AND BEAMS,
18, 81302, (2015).
DOI:
10.1103/PhysRevSTAB.18.081302.
Photon acceleration as a scattering processMendonca, J. T.; Bingham, R., PLASMA PHYSICS AND CONTROLLED FUSION,
57, 44011, (2015).
DOI:
10.1088/0741-3335/57/4/044011.
Generation of shock waves in dense plasmas by high-intensity laser pulsesPasley, John; Bush, I. A.; Robinson, Alexander P. L.; Rajeev, P. P.; Mondal, S.; Lad, A. D.; Ahmed, S.; Narayanan, V.; Kumar, G. Ravindra; Kingham, Robert J., NUKLEONIKA,
60, 193, (2015).
DOI:
10.1515/nuka-2015-0056.
The effect of superluminal phase velocity on electron acceleration in a powerful electromagnetic waveRobinson, A. P. L.; Arefiev, A. V.; Khudik, V. N., PHYSICS OF PLASMAS,
22, 83114, (2015).
DOI:
10.1063/1.4928893.
Evolution of the angular distribution of laser-generated fast electrons due to resistive self-collimationRobinson, A. P. L.; Schmitz, H., PHYSICS OF PLASMAS,
22, 103104, (2015).
DOI:
10.1063/1.4932996.
Guiding of laser-generated fast electrons by exploiting the resistivity-gradients around a conical guide elementRobinson, A. P. L.; Schmitz, H.; Green, J. S.; Ridgers, C. P.; Booth, N., PLASMA PHYSICS AND CONTROLLED FUSION,
57, 64004, (2015).
DOI:
10.1088/0741-3335/57/6/064004.
Control of wire heating with resistively guided fast electrons through an inverse conical taperRobinson, A. P. L.; Schmitz, H.; Green, J. S.; Ridgers, C. P.; Booth, N.; Pasley, J., PHYSICS OF PLASMAS,
22, 43118, (2015).
DOI:
10.1063/1.4917065.
Resistivity of non-crystalline carbon in the 1-100 eV rangeRobinson, A. P. L.; Schmitz, H.; McKenna, P., NEW JOURNAL OF PHYSICS,
17, 83045, (2015).
DOI:
10.1088/1367-2630/17/8/083045.
Compression of X-ray Free Electron Laser Pulses to Attosecond DurationSadler, James D.; Nathvani, Ricky; Oleskiewicz, Piotr; Ceurvorst, Luke A.; Ratan, Naren; Kasim, Muhammad F.; Trines, Raoul M. G. M.; Bingham, Robert; Norreys, Peter A., SCIENTIFIC REPORTS,
5, 16755, (2015).
DOI:
10.1038/srep16755.
Investigation of jet formation from the blast wave of a locally heated laser-irradiated targetSchmitz, H.; Robinson, A. P. L., HIGH ENERGY DENSITY PHYSICS,
15, 82, (2015).
DOI:
10.1016/j.hedp.2015.04.007.
Amplification and generation of ultra-intense twisted laser pulses via stimulated Raman scatteringVieira, J.; Trines, R. M. G. M.; Alves, E. P.; Fonseca, R. A.; Mendonca, J. T.; Bingham, R.; Norreys, P.; Silva, L. O., NATURE COMMUNICATIONS,
7, 10371, (2016).
DOI:
10.1038/ncomms10371.