Publication Beamlines Strategic Pillar
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
Pravica, Michael; Evlyukhin, Egor; Cifligu, Petrika; Harris, Blake; Jae Koh, Jung et al. (2017). X-ray induced synthesis of a novel material: Stable, doped solid CO at ambient conditions. Chemical Physics Letters 686, 183-188. 10.1016/j.cplett.2017.08.053. FAR-IR, HXMA, MID-IR Materials
Pravica, Michael; Sneed, Daniel; Smith, Quinlan; Billinghurst, Brant; May, Tim et al. (2016). A novel synthesis of polymeric CO via useful hard X-ray photochemistry. Cogent Physics 3(1) , 1169880. 10.1080/23311940.2016.1169880. FAR-IR, MID-IR Materials
Lahlali, Rachid; Jiang, Yunfei; Kumar, Saroj; Karunakaran, Chithra; Liu, Xia et al. (2014). ATR–FTIR spectroscopy reveals involvement of lipids and proteins of intact pea pollen grains to heat stress tolerance. Frontiers in Plant Science 5. 10.3389/fpls.2014.00747. FAR-IR, MID-IR Agriculture
Michaelian, K.H.; Wen, Q.; Billinghurst, B.E.; Shaw, J.M.; Lastovka, V. et al. (2012). Far- and mid-infrared photoacoustic spectra of tetracene, pentacene, perylene and pyrene. Vibrational Spectroscopy 58, 50-56. 10.1016/j.vibspec.2011.10.011. FAR-IR, MID-IR
Pravica, Michael; Evlyukhin, Egor; Cifligu, Petrika; Harris, Blake; Jae Koh, Jung et al. (2017). X-ray induced synthesis of a novel material: Stable, doped solid CO at ambient conditions. Chemical Physics Letters 686, 183-188. 10.1016/j.cplett.2017.08.053. FAR-IR, HXMA, MID-IR 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
Ceausu-Velcescu, Adina; Pracna, Petr; Margules, Laurent; Predoi-Cross, Adriana (2021). Rotational spectrum of chloroform, “grass-roots among the forest of trees”: The v2 = 1, v3 = 2, v5 = 1, and v6 = 3 vibrational states of CH35Cl3. Journal of Quantitative Spectroscopy and Radiative Transfer 276, 107937. 10.1016/j.jqsrt.2021.107937. FAR-IR Environment
Esselman, Brian J.; Zdanovskaia, Maria A.; Adkins, Taylor K.; Billinghurst, Brant E.; Zhao, Jianbao et al. (2021). Millimeter-wave and infrared spectroscopy of thiazole (c-C3H3NS) in its ground state and lowest-energy vibrationally excited states (ν18, ν17, and ν13). Journal of Molecular Spectroscopy 379, 111493. 10.1016/j.jms.2021.111493. FAR-IR Environment
Dodangodage, Randika; Bernath, Peter F.; Zhao, Jianbao; Billinghurst, Brant (2021). Absorption cross sections in the CH stretching region for propene broadened by helium and nitrogen. Journal of Quantitative Spectroscopy and Radiative Transfer , 107738. 10.1016/j.jqsrt.2021.107738. FAR-IR Environment
Mane, Jonathan Y.; Michaelian, Kirk H.; Stoyanov, Stanislav R.; Billinghurst, Brant E.; Zhao, Jianbao et al. (2021). Computational and infrared spectroscopic investigations of N-substituted carbazoles. Physical Chemistry Chemical Physics 23(14) . 10.1039/d0cp03879b. FAR-IR Materials
Liang, Yue; Zhang, Yichi; Fábri, Csaba; Ma, Jiarui; Zhao, Jianbao et al. (2021). High-resolution FTIR spectroscopy of benzaldehyde in the far-infrared region: probing the rotational barrier. Physical Chemistry Chemical Physics 23(14) . 10.1039/d1cp00188d. FAR-IR Environment
Collier, Breanna; Krueger, Kristopher; Miller, Isaac; Zhao, Jianbao; Billinghurst, Brant E. et al. (2021). The Synchrotron-based Far-infrared Spectrum of Glycolaldehyde. Astrophysical Journal. Supplement Series 253(2) , 40. 10.3847/1538-4365/abde40. FAR-IR Environment
Kong, Lingping; Gong, Jue; Hu, Qingyang; Capitani, Francesco; Celeste, Anna et al. (2020). Suppressed Lattice Disorder for Large Emission Enhancement and Structural Robustness in Hybrid Lead Iodide Perovskite Discovered by High‐Pressure Isotope Effect. Advanced Functional Materials 31(9) , 2009131. 10.1002/adfm.202009131. FAR-IR Materials
Mukhopadhyay, Indranath; Billinghurst, B.E. (2021). Very high-resolution synchrotron radiation far-infrared (FIR) spectrum of methanol‑D2 (CHD2OH) & millimeter-wave (MMW) measurements involving highly excited torsional vibrational rotational states, and identification of optically pumped FIR laser lines. Infrared Physics and Technology 113, 103563. 10.1016/j.infrared.2020.103563. FAR-IR Materials