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Felice Appugliese

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6 records found

Journal article (2021) - Elena Mavrona, Shima Rajabali, Felice Appugliese, Johan Andberger, Mattias Beck, Giacomo Scalari, Jérôme Faist
We report a monolithic THz planar Fabry-Perot cavity fabricated with wafer bonding and provided with metallic mirrors with subwavelength apertures. We demonstrate its coupling to the cyclotron resonance of a high-mobility, two-dimensional electron gas.Qfactors up to 89 are observed for the first mode at ≃300 GHz, with cooperativity C= 56.4 and a normalized coupling ratio Ωωin the first mode of up to 17.5% and the third mode of up to 6.4%. ...
Journal article (2020) - Janine Keller, Giacomo Scalari, Felice Appugliese, Shima Rajabali, Mattias Beck, Johannes Haase, Christian A. Lehner, Werner Wegscheider, Michele Failla, More authors...
We probe ultrastrong light-matter coupling between metallic terahertz metasurfaces and Landau-level transitions in high-mobility two-dimensional electron and hole gases. We utilize heavy-hole cyclotron resonances in strained Ge and electron cyclotron resonances in InSb quantum wells, both within highly nonparabolic bands, and compare our results to well-known parabolic AlGaAs/GaAs quantum well systems. Tuning the coupling strength of the system by two methods, lithographically and by optical pumping, we observe a behavior clearly deviating from the standard Hopfield model previously verified in cavity quantum electrodynamics: An opening of a lower polaritonic gap. ...
Conference paper (2018) - Janine Keller, Johannes Haase, Felice Appugliese, Shima Rajabali, Zhixin Wang, Gian Lorenzo Paravicini-Bagliani, Curdin Maissen, Giacomo Scalari, Jérôme Faist
We study complementary THz metasurfaces with changing lattice constant. On thick substrates the LC-resonance anti-crosses with a surface plasmon polaritons mode. On 10 μm Simembranes, we reveal a superradiantly limited linewidth of the LC-resonance. ...
Journal article (2018) - Janine Keller, Johannes Haase, Felice Appugliese, Shima Rajabali, Zhixin Wang, Gian Lorenzo Paravicini-Bagliani, Curdin Maissen, Giacomo Scalari, Jérôme Faist
Complementary double split ring THz resonators fabricated on a 10 µm thin Si-membrane are studied. The linewidths of the fundamental LC mode and dipolar mode are drastically narrowing with increased resonator spacing. The extracted decay rate of the LC mode as a function of the resonator density shows a linear dependence, evidencing a collective superradiant effect of the resonator array. Furthermore, it is shown that a metamaterial can be designed for a low superradiant broadening of the resonance at high resonator densities, that is, in the metamaterial condition. The use of a thin membrane as a substrate is crucial, since it shifts the THz surface plasmon polaritons modes to much higher frequencies, preventing them to couple to the LC mode and unveiling the superradiant broadening mechanism for a large range of lattice spacings. At higher frequencies, not interfering with the high Q LC mode, other additional modes, which are ascribed to photonic crystal modes, form in the Si-membrane. The angle-dependent band structure is mapped and corresponding simulated electric field distributions are shown. ...
Journal article (2018) - Janine Keller, Giacomo Scalari, Felice Appugliese, Elena Mavrona, Shima Rajabali, Martin J. Süess, Mattias Beck, Jérôme Faist
We fabricate high temperature superconducting metasurfaces from yttrium-barium-copper oxide (YBCO) films via focused ion beam milling. The design of the complementary split ring resonators yields a high quality factor (up to Q = 31) resonance, which is fully switchable when exploiting the transition from the superconducting to normal conducting state, which is achieved by heating the sample above the critical temperature. Meanwhile, the resonance is continuously visible and frequency stable under the action of a magnetic field, up to B = 9 T. This makes it an ideal candidate for light-matter coupling experiments with magnetic field tunable Landau level transitions. We present two techniques to bring the metasurface in close vicinity of a 2D electron gas in an AlGaAs/GaAs QW without direct deposition, and we achieve a normalized vacuum Rabi frequency of ωRcyc = 24%. ...
Journal article (2016) - Eugenio Calandrini, Tommaso Venanzi, Michele Ortolani, Felice Appugliese, Michela Badioli, Valeria Giliberti, Leonetta Baldassarre, Paolo Biagioni, Francesco De Angelis, Wolfgang M. Klesse, Giordano Scappucci
We study plasmonic nanoantennas for molecular sensing in the mid-infrared made of heavily doped germanium, epitaxially grown with a bottom-up doping process and featuring free carrier density in excess of 1020 cm-3. The dielectric function of the 250 nm thick germanium film is determined, and bow-tie antennas are designed, fabricated, and embedded in a polymer. By using a near-field photoexpansion mapping technique at λ = 5.8 μm, we demonstrate the existence in the antenna gap of an electromagnetic energy density hotspot of diameter below 100 nm and confinement volume 105 times smaller than λ3. ...