Publication Beamlines Strategic Pillar
Glazier, Stephen (2015). Investigating Disordered Positive Electrode Materials for Lithium-Ion Batteries Using Li(1+x)Ti2xFe(1-3x)O2. Supervisor: Dahn, Jeff. Nova Scotia, Canada: Dalhousie University. http://hdl.handle.net/10222/60643. CMCF-BM, REIXS, SXRMB Materials
Muir, D. (2006). Design of a High Performance Soft X-ray Spectrometer for the REIXS Beamline at the Canadian Light Source. Supervisor: Moewes, Alexander; Achenbach, Sven. Canada, SK: University of Saskatchewan. http://hdl.handle.net/10388/etd-11282006-142920. REIXS Materials
Boots, M. (2012). Designing and Optimizing Gratings for Soft X-Ray Diffraction Efficiency. Canada, SK: University of Saskatchewan. . REIXS Materials
Comin, Riccardo (2013). Charge localization phenomena in correlated oxides. Canada, BC: University of British Columbia. http://hdl.handle.net/2429/45655. REIXS Materials
Muir, D. (2013). A Soft X-Ray Emission Endstation for the Canadian Light Source. Supervisor: Moewes, Alex. Canada, SK: University of Saskatchewan. http://hdl.handle.net/10388/ETD-2013-10-1262. REIXS Materials
Kaznacheyev, K.V.; Karunakaran, Ch.; He, F.; Sigrist, M.; Summers, T. et al. (2007). CLS ID-10 chicane configuration: From “Simple Sharing” to extended performance with high-speed polarization switching. Nuclear Instruments and Methods in Physics Research. Section A: Accelerators. Spectrometers. Detectors and Associated Equipment 582(1) , 103-106. 10.1016/j.nima.2007.08.082. REIXS, SM Materials
Li, J. W.; Matias, E.; Chen, N.; Kim, C.-Y.; Wang, J. et al. (2010). Investigations of mechanical vibrations for beamlines at the Canadian Light Source. Journal of Synchrotron Radiation 18(2) , 109-116. 10.1107/s0909049510041075. CMCF-ID, REIXS, SM Materials
Black, Gillian; Cui, Xiaoyu; Gorovikov, Sergey; He, Feizhu; Henneberg, Grant et al. (2019). EUV Stokes reflection polarimeter using gold coated mirrors for use up to 150 eV photon energy. . 10.1117/12.2528826. QMSC, VLS-PGM Materials
Berend Zwartsenberg (2019). Spin-orbit coupling in iridates. Supervisor: Damascelli, Andrea. BC, Canada: University of British Columbia. http://hdl.handle.net/2429/72933. QMSC Materials
May, T.E (2004). Infrared facility at the Canadian light source. Infrared Physics and Technology 45(5-6) , 383-387. 10.1016/j.infrared.2004.01.010. FAR-IR, MID-IR Materials
Opeoluwa E. Fadele (2018). Development and Characterization of Raffia Palm Fiber Reinforced Polymer Matrix Composites. Supervisor: Oguocha, Ikechukwuka N.; Odeshi, Akindele G.. Saskatchewan, Canada: University of Saskatchewan. http://hdl.handle.net/10388/8349. MID-IR Materials
Wallace, Gregory Q.; McRae, Danielle M.; Lagugné-Labarthet, François (2019). Probing mid-infrared plasmon resonances in extended radial fractal structures. Optics Letters 44(15) , 3865. 10.1364/ol.44.003865. MID-IR Materials
Rogers, Michael A.; Liu, Xia; Mallia, V. Ajay; Weiss, Richard G. (2015). Dissecting kinetic pathways to formation of the fibrillar objects in molecular gels using synchrotron FT-IR. CrystEngComm 17(42) , 8085-8092. 10.1039/c5ce00733j. MID-IR Materials
Ben Xu (2015). Assessing different types of disorder in carbonate minerals with vibrational spectroscopy. Supervisor: Poduska, Kristin, M.. Newfoundland and Labrador, Canada: Memorial University. https://research.library.mun.ca/11623/. MID-IR, SXRMB Materials
Wallace, Gregory Q.; Tabatabaei, Mohammadali; Hou, Renjie; Coady, Matthew J.; Norton, Peter R. et al. (2016). Superimposed Arrays of Nanoprisms for Multispectral Molecular Plasmonics. ACS Photonics 3(9) , 1723-1732. 10.1021/acsphotonics.6b00388. MID-IR Materials