Latest publications from the laboratory members:

2022

Ιraklis Simos, Christos Simos, and Nikolaos A. Stathopoulos, “Investigation of locked operation in a system of two passively mode-locked semiconductor lasers under weak lateral coupling,” J. Opt. Soc. Am. B 39, 2457-2463 (2022), DOI: 10.1364/JOSAB.463056

Andreas Fichtner, Adonis Bogris, Daniel Bowden, Konstantinos Lentas, Nikolaos S Melis, Thomas Nikas, Christos Simos, Iraklis Simos, Krystyna Smolinski, Sensitivity kernels for transmission fibre optics, Geophysical Journal International, Volume 231, Issue 2, December 2022, Pages 1040–1044, DOI: 10.1093/gji/ggac238

Bogris, A.; Nikas, T.; Simos, C.; Simos, I.; Lentas, K.; Melis, Ν. S.; Fichtner, A.; Bowden, D.; Smolinski, K.; Mesaritakis, C. & Chochliouros, I. Sensitive seismic sensors based on microwave frequency fiber interferometry in commercially deployed cables, Scientific Reports, Nature Publishing Group, 2022, 12, 14000, DOI: 10.1038/s41598-022-18130-x

Daniel C. Bowden, Andreas Fichtner, Thomas Nikas, Adonis Bogris, Christos Simos, Krystyna Smolinski, Maria Koroni, Konstantinos Lentas, Iraklis Simos, Nikolaos S. Melis Linking distributed and integrated fiber-optic sensing. Geophysical Research Letters, 49, 2022, e2022GL098727, DOI: 10.1029/2022GL098727

Andreas Fichtner, Adonis Bogris, Thomas Nikas, Daniel Bowden, Konstantinos Lentas, Nikolaos S Melis, Christos Simos, Iraklis Simos, Krystyna Smolinski, Theory of phase transmission fibre-optic deformation sensing, Geophysical Journal International, Volume 231, Issue 2, December 2022, Pages 1031–1039, DOI: 10.1093/gji/ggac237

Daniel Bowden, Andreas Fichtner, Thomas Nikas, Adonis Bogris, Konstantinos Lentas, Christos Simos, Krystyna Smolinski, Iraklis Simos, and Nikolaos Melis, “Comparing two fiber-optic sensing systems: Distributed Acoustic Sensing and Direct Transmission”, EGU General Assembly 2022, Art. no. EGU22-11599, Vienna, Austria, 23–27 May 2022, DOI: 10.5194/egusphere-egu22-11599

Krystyna T. Smolinski, Daniel C. Bowden, Konstantinos Lentas, Nikolaos S. Melis, Christos Simos, Adonis Bogris, Iraklis Simos, Thomas Nikas, and Andreas Fichtner, “Distributed acoustic sensing in the Athens metropolitan area: Preliminary results”, EGU General Assembly 2022, Art. no. EGU22-11864, Vienna, Austria, 23–27 May 2022, DOI: 10.5194/egusphere-egu22-11864

Adonis Bogris, Christos Simos, Iraklis Simos, Thomas Nikas, Nikolaos S. Melis, Nikolaos, Konstantinos Lentas, Charis Mesaritakis, Ioannis Chochliouros, Christina Lessi, “Microwave frequency dissemination systems as sensitive and low-cost interferometers for earthquake detection on commercially deployed fiber cables”, Optical Fiber Communications Conference and Exhibition, OFC 2022, Art. no. M2F.4, San Diego CA, USA, 6-10 March 2022, DOI: 10.1364/OFC.2022.M2F.4

2021

Simos, C., Simos, I. & Georgiou, G. Delay differential equations enriched with nonlinear gain compression for passively mode-locked semiconductor lasers. Opt. Quant. Electron. 53, 30 (2021). DOI: 10.1007/s11082-020-02688-9

2020

Dominik Auth, Christoph Weber, Iraklis H. Simos, Christos Simos, Luke F. Lester, Stefan Breuer, Synchronization of two passively mode-locked quantum-dot lasers by mutual optical injection, SPIE Photonics West, San Francisco, California, USA, 1–6 February 2020, 11301-68

2019

C. Weber, D. Auth I. Simos, C. Simos and S. Breuer: Repetition rate locking of mutually injected monolithic passively mode-locked semiconductor quantum dot lasers, Conference: CLEO®/Europe-EQEC, Munich, Germany, 23-27 June 2019, DOI: 10.1109/CLEOE-EQEC.2019.8871668

Christoph Weber, Dominik Auth, Iraklis Hercules Simos, Christos Simos, and Stefan Breuer: Synchronization of two mutually optically injected passively mode-locked quantum dot lasers, Deutsche Physikalische Gesellschaft, Regensburg, 31 March- 05. April 2019

2018

I. H. Simos and C. Simos, “Synchronization Dynamics of Mutually Injected Passively Mode-Locked Semiconductor Lasers”, IEEE Journal of Quantum Electronics, vol. 54, no. 6, pp. 1-7, Dec. 2018, Art no. 2001106. DOI: 10.1109/JQE.2018.2874085