Personal information

Verified email domains

Activities

Employment (1)

Columbia University: New York, New York, US

Postdoctoral Research Scientist (Mechanical Engineering)
Employment
Source: Self-asserted source
Thomas Darlington

Works (10)

Ultrastrong light–matter coupling in two-dimensional metal–organic chalcogenolates

Nature Photonics
2025-03 | Journal article
Contributors: Surendra B. Anantharaman; Jason Lynch; Mariya Aleksich; Christopher E. Stevens; Christopher Munley; Bongjun Choi; Sridhar Shenoy; Thomas Darlington; Arka Majumdar; P. James Schuck et al.
Source: check_circle
Crossref

Infrared nanosensors of piconewton to micronewton forces

Nature
2025-01-02 | Journal article
Contributors: Natalie Fardian-Melamed; Artiom Skripka; Benedikt Ursprung; Changhwan Lee; Thomas P. Darlington; Ayelet Teitelboim; Xiao Qi; Maoji Wang; Jordan M. Gerton; Bruce E. Cohen et al.
Source: check_circle
Crossref

Characterization of quantum dot-like emitters in programmable arrays of nanowrinkles of 1L-WSe2

Journal of Applied Physics
2024-07-28 | Journal article
Contributors: Matthew C. Strasbourg; Emanuil S. Yanev; Thomas P. Darlington; Kavika Faagau; Luke N. Holtzman; Katayun Barmak; James C. Hone; P. James Schuck; Nicholas J. Borys
Source: check_circle
Crossref

Programmable nanowrinkle-induced room-temperature exciton localization in monolayer WSe2

Nature Communications
2024-02-20 | Journal article
Contributors: Emanuil S. Yanev; Thomas P. Darlington; Sophia A. Ladyzhets; Matthew C. Strasbourg; Chiara Trovatello; Song Liu; Daniel A. Rhodes; Kobi Hall; Aditya Sinha; Nicholas J. Borys et al.
Source: check_circle
Crossref

Dynamics of self-hybridized exciton–polaritons in 2D halide perovskites

Light: Science & Applications
2024-01-01 | Journal article
Contributors: Surendra B. Anantharaman; Jason Lynch; Christopher E. Stevens; Christopher Munley; Chentao Li; Jin Hou; Hao Zhang; Andrew Torma; Thomas Darlington; Francis Coen et al.
Source: check_circle
Crossref

Programming twist angle and strain profiles in 2D materials

Science
2023-08-11 | Journal article
Contributors: Maëlle Kapfer; Bjarke S. Jessen; Megan E. Eisele; Matthew Fu; Dorte R. Danielsen; Thomas P. Darlington; Samuel L. Moore; Nathan R. Finney; Ariane Marchese; Valerie Hsieh et al.
Source: check_circle
Crossref

Direct nano-imaging of light-matter interactions in nanoscale excitonic emitters

Nature Communications
2023-05-08 | Journal article
Contributors: Kiyoung Jo; Emanuele Marino; Jason Lynch; Zhiqiao Jiang; Natalie Gogotsi; Thomas P. Darlington; Mohammad Soroush; P. James Schuck; Nicholas J. Borys; Christopher B. Murray et al.
Source: check_circle
Crossref

Nanoscale Optical Imaging of 2D Semiconductor Stacking Orders by Exciton‐Enhanced Second Harmonic Generation

Advanced Optical Materials
2022-06 | Journal article
Part of ISSN: 2195-1071
Part of ISSN: 2195-1071
Contributors: Kaiyuan Yao; Shuai Zhang; Emanuil Yanev; Kathleen McCreary; Hsun‐Jen Chuang; Matthew R. Rosenberger; Thomas Darlington; Andrey Krayev; Berend T. Jonker; James C. Hone et al.
Source: Self-asserted source
Thomas Darlington

Imaging strain-localized excitons in nanoscale bubbles of monolayer WSe2 at room temperature

Nature Nanotechnology
2020-10 | Journal article
Part of ISSN: 1748-3387
Part of ISSN: 1748-3395
Contributors: Thomas P. Darlington; Christian Carmesin; Matthias Florian; Emanuil Yanev; Obafunso Ajayi; Jenny Ardelean; Daniel A. Rhodes; Augusto Ghiotto; Andrey Krayev; Kenji Watanabe et al.
Source: Self-asserted source
Thomas Darlington

Facile and quantitative estimation of strain in nanobubbles with arbitrary symmetry in 2D semiconductors verified using hyperspectral nano-optical imaging

The Journal of Chemical Physics
2020-07-14 | Journal article
Contributors: Thomas P. Darlington; Andrey Krayev; Vishal Venkatesh; Ravindra Saxena; Jeffrey W. Kysar; Nicholas J. Borys; Deep Jariwala; P. James Schuck
Source: check_circle
Crossref

Peer review (4 reviews for 3 publications/grants)

Review activity for Communications materials. (1)
Review activity for MethodsX. (2)
Review activity for npj 2D materials and applications. (1)