Oleg Varnavski; Neranga Abeyasinghe; Juan Aragó; etal. (1 April 2015). "High Yield Ultrafast Intramolecular Singlet Exciton Fission in a Quinoidal Bithiophene". The Journal of Physical Chemistry Letters. 6 (8): 1375–1384. doi:10.1021/ACS.JPCLETT.5B00198. ISSN1948-7185. PMID26263138. WikidataQ51813453.
Personal life
Goodson is married to physician Stephanie Goodson.[6]
References
↑"Annual Review of Physical Chemistry -- Current editorial committee". Annual Reviews. Retrieved 15 July 2025.
↑ Goodson (2006). "Enhanced Two-Photon Excitation of Fluorescent Molecules with Entangled Photons". The Journal of Physical Chemistry B . 110 (12): 1509– 1518. doi : 10.1021/jp066767g . PMID 17181189 .
↑ Goodson (2013). "Entangled Two-Photon Absorption: Experimental Demonstration with Small Organic Molecules". The Journal of Physical Chemistry Letters . 4 (12): 1970–1975 . doi : 10.1021/jz400851d . PMID 26283251 .
↑ Varnavski, O.; Johnson, P.; Liu, T.; Pal, D.; Mashour, GA; Goodson t, 3rd (2024). "有機デンドリマーの非線形分光学的特性". The Journal of Physical Chemistry B . 118 (5): 1219– 1228. doi : 10.1021/acs.jpcb.4c03225 . PMID 39536763 .{{cite journal}}: CS1 maint: 数値名: 著者リスト (リンク)
↑「有機材料における二光子吸収」The Journal of Physical Chemistry C. 120 ( 36): 19709–19715 . doi : 10.1021/acs.jpcc.4c05907 .
↑「二光子励起における量子光学効果」The Journal of Physical Chemistry C. 118 ( 34): 19848–19853 . doi : 10.1021/acs.jpcc.4c01747 .
↑ Mandal, H.; Ogunyemi, OJ; Nicholson, JL; Orr, ME; Lalisse, RF; Gogoi, AR; Gutierrez, O.; Michaudel, Q.; Goodson T III (2024). "Entangled Photon Absorption in Small Molecules" . The Journal of Physical Chemistry C . 126 (7): 3715– 3720. doi : 10.1021/acs.jpcc.3c07082 . PMC 10875663 . PMID 38379916 .
↑ Varnavski, O.; Giri, SK; Chiang, TM; Zeman Cj, IV; Schatz, GC; Goodson T III (2023). "ナノ構造における非線形吸収の増強" . Proceedings of the National Academy of Sciences . 120 (12): 6725– 6730. doi : 10.1073/pnas.2307719120 . PMC 10466183 . PMID 37603737 .
↑「分子吸収における光子量子効果」The Journal of Physical Chemistry C. 124 ( 8): 4300–4308 . doi : 10.1021/acs.jpcc.2c08455 .
↑「小分子による量子もつれ光子吸収」The Journal of Physical Chemistry C. 124 ( 12): 5400–5406 . doi : 10.1021/acs.jpcc.2c00830 .
↑ Burdick, RK; Schatz, GC; Goodson t, 3rd (2021). "有機系におけるエンタングルド光子分光法". Journal of the American Chemical Society . 144 (8): 3448–3456 . doi : 10.1021/jacs.1c09728 . PMID 34613733 .{{cite journal}}: CS1 maint: 数値名: 著者リスト (リンク)
↑ Varnavski, O.; Goodson t, 3rd (2020). "高感度二光子吸収測定". Journal of the American Chemical Society . 142 (3): 1105– 1112. doi : 10.1021/jacs.0c01153 . PMID 32644814 .{{cite journal}}: CS1 maint: 数値名: 著者リスト (リンク)
↑ Kang, G.; Nasiri Avanaki, K.; Mosquera, MA; Burdick, RK; Villabona-Monsalve, JP; Goodson t, 3rd; Schatz, GC (2020). "Quantum Optical Techniques in Two-Photon Absorption". Journal of the American Chemical Society . 142 (8): 2408– 2415. doi : 10.1021/jacs.0c02808 . PMID 32401020 .{{cite journal}}: CS1 maint: 数値名: 著者リスト (リンク)
↑ Burdick, RK; Villabona-Monsalve, JP; Mashour, GA; Goodson T III (2019). "分子二光子吸収の増強" . Scientific Reports . 9 (1): 47651. doi : 10.1038/s41598-019-47651-1 . PMC 6683176 . PMID 31383882 .
↑ Villabona-Monsalve, JP; Varnavski, O.; Palfey, BA; Goodson t, 3rd (2018). "Entangled Two-Photon Excitation in Biological Molecules". Journal of the American Chemical Society . 140 (15): 4850– 4857. doi : 10.1021/jacs.8b08515 . PMID 30346158 .{{cite journal}}: CS1 maint: 数値名: 著者リスト (リンク)
↑ Eshun, A.; Cai, Z.; Awies, M.; Yu, L.; Goodson t, 3rd (2018). "Advanced Nonlinear Absorption with Quantum Light". The Journal of Physical Chemistry A . 122 (15): 4050– 4055. doi : 10.1021/acs.jpca.8b06312 . PMID 30251540 .{{cite journal}}: CS1 maint: 数値名: 著者リスト (リンク)
↑ Burdick, RK; Varnavski, O.; Molina, A.; Upton, L.; Zimmerman, P.; Goodson t, 3rd (2018). "非線形分光におけるエンタングルド光子". The Journal of Physical Chemistry A . 122 (22): 5800– 5808. doi : 10.1021/acs.jpca.8b07466 . PMID 30223648 .{{cite journal}}: CS1 maint: 数値名: 著者リスト (リンク)
↑ Varnavski, O.; Pinsky, B.; Goodson t, 3rd (2017). "Quantum Light in Two-Photon Processes". The Journal of Physical Chemistry Letters . 7 (8): 1678– 1684. doi : 10.1021/acs.jpclett.6b02378 . PMID 28029793 .{{cite journal}}: CS1 maint: 数値名: 著者リスト (リンク)
↑ Parzuchowski, Kristen M.; Mikhaylov, Alexander; Mazurek, Michael D.; Wilson, Ryan N.; Lum, Daniel J.; Gerrits, Thomas; Camp Jr., Charles H.; Stevens, Martin J.; Jimenez, Ralph (2020). "有機分子におけるエンタングルド二光子吸収の再評価". Physical Review Applied . 15 (4) 044012. arXiv : 2008.02664 . doi : 10.1103/PhysRevApplied.15.044012 .
↑ Landes, Tiemo; Allgaier, Markus; Merkouche, Sofiane; Smith, Brian J.; Marcus, Andrew H.; Raymer, Michael G. (2020). "Critique of Entangled Two-Photon Absorption Claims". Physical Review Research . 3 (3) 033154. arXiv : 2012.06736 . doi : 10.1103/PhysRevResearch.3.033154 .
↑ Hickam, Bryce P.; He, Manni; Harper, Nathan; Szoke, Szilard; Cushing, Scott (2022). "量子もつれ光子吸収における実験的課題". The Journal of Physical Chemistry Letters . 14 (9): 2750–2755 . arXiv : 2202.11764 . doi : 10.1021 /acs.jpclett.2c00865 . PMID 35635002 .
↑ Eshun, Audrey V.; Wilson, Ashleigh; Shelby, Megan; Davenport, Dominique; Jeppson, Samuel; Demory, Brandon; Kiannejad, Shervin; Boley, Charles; Rushford, Mike; Bond, Tiziana; Laurence, Ted (2024). "Investigating fluorescent amino acids with entangled two-photon excited fluorescence". In Aiello, Clarice; Polyakov, Sergey V.; Derr, Paige (eds.). Quantum Effects and Measurement Techniques in Biology and Biophotonics . Vol. 12863. p. 1286306. doi : 10.1117/12.3003307 . ISBN978-1-5106-6985-7. OSTI 2301827 .{{cite book}}:|journal=無視されました (ヘルプ)
↑ He, Manni; Hickam, Bryce P.; Harper, Nathan; Cushing, Scott K. (2023). "有機分子における共鳴増強エンタングルド二光子吸収の実験的上限値". The Journal of Chemical Physics . 160 (9): 094305. arXiv : 2312.14382 . doi : 10.1063/5.0193311 . PMID 38445732 .
↑Corona-Aquino, S.; Calderón-Losada, O.; Li-Gómez, M. Y.; Cruz-Ramirez, H.; Álvarez-Venicio, V.; Carreón-Castro MDP; De j León-Montiel, R.; u'Ren, A. B. (2022). "Entangled Photon-Induced Absorption in Model Organic Systems: A Theoretical Reassessment". The Journal of Physical Chemistry A. 126 (15): 2315–2321. doi:10.1021/acs.jpca.2c00720. PMID35383460.