*Detailed list of my publications on Google Scholar and ORCID.
2023:
- S. Rajabali, J. Enkner, E. Cortese, M. Beck, S. De Liberato, J. Faist, G. Scalari, [invited paper] , “Engineered planar plasmonic reflector for polaritonic mode confinement”, Opt. Mat. Exp. 13,

- S. Rajabali, C.-I. Benea Chelmus, Perspective article, “Present and future of terahertz integrated photonic devices “, APL Photonics 8, 080901 (2023).

2022:
- S. Rajabali, S. Markmann, E. Joechl, M. Beck, C. A. Lehner, W. Wegscheider, J. Faist, G. Scalari, “An ultrastrongly coupled single terahertz meta-atom”, Nature Communications 13, 2528 (2022).

2021:
- S. Rajabali, E. Cortese, M. Beck, S. De Liberato, J. Faist, G. Scalari, “Polaritonic nonlocality in light–matter interaction”, Nature Photonics 15, 690–695 (2021).
- Highlighted in Nature News & Views and ETHZ News

- E. Mavrona, S. Rajabali, F. Appugliese, J. Andberger, M. Beck, G. Scalari, and J. Faist, “THz Ultrastrong Coupling in an Engineered Fabry–Perot Cavity”, ACS Photonics, 8, 9, 2692-2698 (2021).
2020:
- J. Keller, G. Scalari, F. Appugliese, S. Rajabali, M. Beck, J. Haase, C. Lehner,W. Wegscheider, M. Failla, M. Myronov, D. R. Leadley, J. Lloyd-Hughes, P. Nataf, and J. Faist, “Landau polaritons in highly nonparabolic two-dimensional gases in the ultrastrong coupling regime”, Phys. Rev. B 101, 075301 (2020).
- M. Rajabali, M. Esfandiari, S. Rajabali, M. Vakili-Tabatabaei, Sh. Mohajerzadeh, S. Mohajerzadeh, “High-Performance Phosphorene-Based Transistors Using a Novel Exfoliation-Free Direct Crystallization on Silicon Substrates”, Adv. Mater. Interfaces 7, Issue 17, 2000774 (2020).
2018:
- J. Keller, G. Scalari, F. Appugliese, E. Mavrona, S. Rajabali, M. J. Süess, M. Beck, and J. Faist, “High Tc Superconducting THz Metamaterial for Ultrastrong Coupling in a Magnetic Field”, ACS Photonics 5, 10, 3977–3983 (2018).
- J. Keller, J. Haase, F. Appugliese, S. Rajabali, Z. Wang, G. L. Paravicini-Bagliani, C. Maissen, G. Scalari, and J. Faist, “Superradiantly Limited Linewidth in Complementary THz Metamaterials on Si-Membranes”, Adv. Opt. Materials 6, Issue 16, 1800210 (2018).
Before 2017 :
- M. Habibi, S. Darbari, S. Rajabali, and V. Ahmadi, “Fabrication of a graphene-based pressure sensor by utilising field emission behavior of carbon nanotubes”, Carbon 96, 259-267 (2016).
- H. Taghinejad, M. Taghinejad, M. Abdolahad, S. Rajabali, A. Rostamian, S.
Mohajerzadeh, and E. Hosseinian, “The conformal silicon deposition on carbon nanotubes as enabled by hydrogenated carbon coatings for synthesis of carbon/silicon core/shell heterostructure photodiodes”, Carbon 87, 299-308 (2015). - S. Taak, S. Rajabali, S. Darbari, and S. Mohajerzadeh, “High sensitive/wide dynamic range, field emission pressure sensor based on fully embedded CNTs”, J. Phys. D: Appl. Phys. 47, 045302 (2014) .
- F. Karbassian, S. Rajabali, A. Chimeh, S. Mohajerzadeh and Ebrahim Asl-Soleimani, “Luminescent porous silicon prepared by reactive ion etching”, J. Phys. D: Appl. Phys. 47, 385103 (2014).
- S. Soleimani, A.Gholizadeh, S. Rajabali, Z.Sanaee, and S. Mohajerzadeh, “Formation of Si nanorods and hollow nano-structures using high precision plasma-treated nanosphere lithography”, RSC Adv. 4, 12701-12709 (2014).
- F. Karbassian, B. K. Mousavi, S. Rajabali, R. Talei, S. Mohajerzadeh and Ebrahim Asl- Soleimani, “Formation of Luminescent Silicon Nanowires and Porous Silicon by Metal-Assisted Electroless Etching”, J. Elec. Materi. 43, 1271–1279 (2014).
- F. Karbassian, S. Rajabali, S. Mohajerzadeh, and R. Talei, “Room temperature multilayer luminescent silicon nanocrystals”, Scientia Irnica 20, Issue 3, 1063-1066 (2013).
Keep calm and smile 🙂