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Capasso, Federico

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Capasso

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Federico

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Capasso, Federico

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Now showing 1 - 10 of 28
  • Publication

    Deformed Microcavity Quantum Cascade Lasers with Directional Emission

    (Institute of Physics, 2009) Wang, Qi; Yan, Changling; Diehl, Laurent; Hentschel, Martina; Wiersig, Jan; Yu, Nanfang; Pflügl, Christian; Edamura, Tadataka; Yamanishi, Masamichi; Kan, Hirofumi; Belkin, Mikhail A.; Capasso, Federico

    We report the experimental realization of deformed microcavity quantum cascade lasers (QCLs) with a Limaçon-shaped chaotic resonator. Directional light emission with a beam divergence of (\theta_{|} \approx 33^{\circ}) from QCLs emitting at λ ≈ 10µm was obtained in the plane of the cavity for deformations in the range 0.37 < ε < 0.43. An excellent agreement between measured and calculated far-field profiles was found. Both simulations and experiments show that the Limaçon-shaped microcavity preserves whispering gallery-like modes with high Q-factors for low deformations (ε < 0.50). In addition, while the measured spectra show a transition from whispering gallery-like modes to a more complex mode structure at higher pumping currents, we observed ‘universal far-field behavior’ for different intracavity mode distributions in the Limaçon microcavity, which can be explained by the distribution of unstable manifolds in ray optics simulations. Furthermore, the performance of the deformed microcavity lasers is robust with respect to variations of the deformation near its optimum value ε = 0.40, which implies that this structure reduces the requirements on photolithography fabrication. The successful realization of these microcavity lasers may lead to applications in optoelectronics.

  • Publication

    3 W Continuous-Wave Room Temperature Single-Facet Emission From Quantum Cascade Lasers Based On Nonresonant Extraction Design Approach

    (American Institute of Physics, 2009) Lyakh, Arkadiy; Maulini, Richard; Tsekoun, Alexei; Go, Rowel; Pflügl, Christian; Diehl, Laurent; Wang, Qi Jie; Capasso, Federico; Patel, C. Kumar N.

    A strain-balanced, InP-based quantum cascade laser structure, designed for light emission at 4.6 (\mu)m using a new nonresonant extraction design approach, was grown by molecular beam epitaxy. Removal of the restrictive two-phonon resonant condition, currently used in most structure designs, allows simultaneous optimization of several design parameters influencing laser performance. Following the growth, the structure was processed in buried heterostructure. Maximum single-ended continuous-wave optical power of 3 W was obtained at 293 K for devices with stripe dimensions of 5 mm 11.6 (\mu)m. Corresponding maximum wallplug efficiency and threshold current density were measured to be 12.7% and 0.86 kA/cm(^{2}).

  • Publication

    Multi-Beam Multi-Wavelength Semiconductor Lasers

    (American Institute of Physics, 2009) Capasso, Federico; Yu, Nanfang; Kats, Mikhail A; Pflügl, Christian; Geiser, Markus; Wang, Qi Jie; Belkin, Mikhail A.; Fischer, Milan; Wittmann, Andreas; Faist, Jérôme; Edamura, Tadataka; Furuta, Shinichi; Yamanishi, Masamichi; Kan, Hirofumi

    Multibeam emission and spatial wavelength demultiplexing in semiconductor lasers by patterning their facets with plasmonic structures is reported. Specifically, a single-wavelength laser was made to emit beams in two directions by defining on its facet two metallic gratings with different periods. The output of a dual-color laser was spatially separated according to wavelength by using a single metallic grating. The designs can be integrated with a broad range of active or passive optical components for applications such as interferometry and demultiplexing.

  • Publication

    Epitaxial Catalyst-Free Growth of InN Nanorods on c-Plane Sapphire

    (Springer-Verlag, 2009) Shalish, Ilan; Seryogin, G.; Yi, W.; Bao, J. M.; Zimmler, M. A.; Likovich, Edward Michael; Bell, David; Capasso, Federico; Narayanamurti, Venkatesh

    We report observation of catalyst-free hydride vapor phase epitaxy growth of InN nanorods. Characterization of the nanorods with transmission electron microscopy, and X-ray diffraction show that the nanorods are stoichiometric 2H–InN single crystals growing in the [0001] orientation. The InN rods are uniform, showing very little variation in both diameter and length. Surprisingly, the rods show clear epitaxial relations with the c-plane sapphire substrate, despite about 29% of lattice mismatch. Comparing catalyst-free with Ni-catalyzed growth, the only difference observed is in the density of nucleation sites, suggesting that Ni does not work like the typical vapor–liquid–solid catalyst, but rather functions as a nucleation promoter by catalyzing the decomposition of ammonia. No conclusive photoluminescence was observed from single nanorods, while integrating over a large area showed weak wide emissions centered at 0.78 and at 1.9 eV.

  • Publication

    The Forces from Coupled Surface Plasmon Polaritons in Planar Waveguides

    (Optical Society of America, 2009) Woolf, David; Loncar, Marko; Capasso, Federico
  • Publication

    Beam Combining of Quantum Cascade Laser Arrays

    (Optical Society of America, 2009) Lee, Benjamin; Kansky, Jan; Goyal, Anish K.; Pflügl, Christian; Diehl, L; Belkin, Mikhail A.; Sanchez, Antonio; Capasso, Federico
  • Publication

    Mode-Locked Pulses from Mid-Infrared Quantum Cascade Lasers

    (Optical Society of America, 2009-12-01) Wang, Christine Y.; Kuznetsova, Lyuba; Gkotsas, Vasileios‐Marios; Diehl, L; Kaertner, Franz X.; Belkin, Mikhail A.; Belyanin, Alexey; Li, Xiaofeng; Ham, Donhee; Schneider, Harald; Grant, Peter; Song, C. Y.; Haffouz, Soufien; Wasilewski, Zbigniew; Liu, H. C.; Capasso, Federico

    In this study, we report the unequivocal demonstration of midinfrared mode-locked pulses from quantum cascade lasers. The train of short pulses was generated by actively modulating the current and hence the gain of an edge-emitting quantum cascade laser (QCL). Pulses with duration of about 3 ps at full-width-at-half-maxima and energy of 0.5 pJ were characterized using a second-order interferometric autocorrelation technique based on a nonlinear quantum well infrared photodetector. The mode-locking dynamics in the QCLs was modeled based on the Maxwell-Bloch equations in an open two-level system. Our model reproduces the overall shape of the measured autocorrelation traces and predicts that the short pulses are accompanied by substantial wings as a result of strong spatial hole burning. The range of parameters where short mode-locked pulses can be formed is found.

  • Publication

    Broadband Distributed-Feedback Quantum Cascade Laser Array Operating From 8.0 to 9.8 um

    (Institute of Electrical and Electronics Engineers, 2009) Lee, Benjamin G.; Zhang, Haifei; Pfluegl, Christian; Diehl, L; Belkin, Mikhail A.; Fischer, Milan; Wittmann, Andreas; Faist, Jerome; Capasso, Federico

    An ultra-broadband distributed-feedback quantum cascade laser array was fabricated, using a heterogeneous cascade based on two bound-to-continuum designs centered at 8.4 and 9.6 mum. This array emitted in a range over 220 cm-1 near a 9-mu m wavelength, operated in pulsed mode at room temperature. The output power of the array varied between 100- and 1100-mW peak intensity.

  • Publication

    On the Temperature Dependence of Point-Defect-Mediated Luminescence in Silicon

    (American Institute of Physics, 2009) Recht, Daniel; Capasso, Federico; Aziz, Michael

    We present a model of the temperature dependence of point-defect-mediated luminescence in silicon derived from basic kinetics and semiconductor physics and based on the kinetics of bound exciton formation. The model provides a good fit to data for W line electroluminescence and G line photoluminescence in silicon. Strategies are discussed for extending luminescence to room temperature.

  • Publication

    Directional Emission and Universal Far-Field Behavior from Semiconductor Lasers with Limacon-Shaped Microcavity

    (American Institute of Physics, 2009) Capasso, Federico; Yan, Changling; Wang, Qi Jie; Diehl, L; Hentschel, Martina; Wiesig, Jan; Yu, Nanfang; Belkin, Mikhail A.; Edamua, Tadataka; Yamanishi, Masamichi; Kan, Hirofumi; Pflügl, Christian

    We report experimental demonstration of directional light emission from limaçon-shaped microcavity semiconductor lasers. Quantum cascade lasers (QCLs) emitting at (\lambda \approx 10 \mu m) are used as a model system. Both ray optics and wave simulations show that for deformations in the range (0.37< \epsilon <0.43), these microcavities support high quality-factor whispering gallerylike modes while having a directional far-field profile with a beam divergence (\theta \approx 30°) in the plane of the cavity. The measured far-field profiles are in good agreement with simulations. While the measured spectra show a transition from whispering gallerylike modes to a more complex mode structure at higher pumping currents, the far field is insensitive to the pumping current demonstrating the predicted “universal far-field behavior” of this class of chaotic resonators. Due to their relatively high quality factor, our microcavity lasers display reduced threshold current densities compared to conventional ridge lasers with millimeter-long cavities. The performance of the limaçon-shaped QCLs is robust with respect to variations of the deformation near its optimum value of ( \epsilon = 0.40).