------------------- GENERAL INFORMATION ------------------- 1. Title of Dataset Data set for Optical-Resonance-Enhanced Nonlinearities in a MoS2-Coated Single-Mode Fiber 2. Author Information HAOJIE ZHANG 1,*, NOEL HEALY 2, ANTOINE F. J. RUNGE 1, CHUNG CHE HUANG 1, DANIEL W. HEWAK 1, AND ANNA C. PEACOCK 1 1 Optoelectronics Research Centre, University of Southampton, Highfield, Southampton SO17 1BJ, UK 2 Emerging Technology and Materials Group, School of Electrical and Electronic Engineering, Newcastle University, Newcastle upon Tyne NE1 7RU, UK *Corresponding author: hz15e13@soton.ac.uk 3. Date of data collection January 2016 to February 2017 4. Geographic location of data collection: University of Southampton 5. Information about funding sources that supported the collection of the data: EPSRC for financial support through EP/P000940/1 and the Future Photonics Hub (EP/H02607X/1) -------------------------- SHARING/ACCESS INFORMATION -------------------------- 1. Licenses/restrictions placed on the data: Creative Commons: Attribution 4.0 (CC BY) No restriction 2. Recommended citation for the data: Zhang, H., Healy, N., Runge, A. F., Huang, K. C., Hewak, D., Peacock, A., Data set for Optical-Resonance-Enhanced Nonlinearities in a MoS2-Coated Single-Mode Fiber, University of Southampton, 5 Apr 2018 -------------------------- METHODOLOGICAL INFORMATION -------------------------- 1. Description of methods used for collection/generation of data: Described in the publication: Zhang, H., Healy, N., Runge, A. F., Huang, K. C., Hewak, D., Peacock, A., Optical-resonance-enhanced nonlinearities in a MoS2-coated single-mode fiber, Opt. Lett., 2018. 2. People involved with data collection, processing and analysis: Haojie Zhang, Noel Healy, and Anna Peacock --------------------- DATA & FILE OVERVIEW --------------------- 1. File List Filename: OL_MoS2_Data.xlsx Short description: Data for ploting Fig. 2. (a) Experimental absorption spectrum of the MoS2 - coated fiber device (~ ± 5% uncertainty for each measurement). (b) Simulated absorption spectrum Fig. 3. Nonlinear saturable absorption measurements (~ ± 5% uncertainty for each measurement). Transmittance of MoS2 - coated fiber device as a function of average input power Fig. 4. Output spectral evolution at different input peak powers to illustrate spectral broadening Fig. 6. Normalised intensity of the probe light as a function of the pump-probe time delay. Fig. 6 Inset exponential fit of the falling edge