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Optics Express, ISSN 1094-4087, 12/2018, Volume 26, Issue 25, pp. 33245 - 33252
.... Here we have developed a hybrid planar Fabiy-Perot microcavity by using a two-photon polymerization process (2PP... 
FINESSE | OPTICS
Journal Article
Advanced Optical Materials, ISSN 2195-1071, 01/2018, Volume 6, Issue 1, pp. 1700791 - n/a
...) due to the electrochromic effect of the WO3 layer, and this unique character is utilized to construct an electrically tunable microcavity luminescent device with embedded green CdSe@ZnS quantum dots (QDs... 
luminescence | photonic crystals | microcavity | electrochromic materials | stimuli‐responsive | stimuli-responsive | DIMENSIONAL PHOTONIC CRYSTALS | COLORS | SOLAR-CELLS | MATERIALS SCIENCE, MULTIDISCIPLINARY | OPTICS | INVERSE OPAL | MIRRORS | Zinc sulfides | Electric potential | Broadband | Quantum dots | Photoluminescence | Electroluminescence | Electrochromism | Tungsten oxides | Reflectors | Electron beams | Bragg reflectors | Electric power distribution | Reflectance
Journal Article
SENSORS, ISSN 1424-8220, 10/2019, Volume 19, Issue 19, p. 4097
.... Experiments showed that the microcavity EPFI strain sensor with initial cavity lengths of 20 mu m, 30 mu m, and 40 mu m, and a capillary length of 40 mm, can yield respective cavity length-strain sensitivities... 
CHEMISTRY, ANALYTICAL | INSTRUMENTS & INSTRUMENTATION | BRAGG GRATING STRAIN | OPTIC SENSORS | TEMPERATURE | strain sensor | Fabry-Perot cavity | fiber-optic sensor | sensitivity | IN-LINE FIBER | GAUGE | ENGINEERING, ELECTRICAL & ELECTRONIC | Fabry–Perot cavity
Journal Article
ECS transactions, ISSN 1938-6737, 12/2019, Volume 23, Issue 1, pp. 545 - 551
Journal Article
Lab on a Chip, ISSN 1473-0197, 08/2015, Volume 15, Issue 19, pp. 3862 - 3869
Journal Article
NATURE PHOTONICS, ISSN 1749-4885, 11/2019, Volume 13, Issue 11, pp. 770 - 775
...%, fundamentally limiting the scaling of photonic quantum technologies. Here, we overcome this long-standing challenge by coherently driving quantum dots deterministically coupled to polarization-selective Purcell microcavities... 
ISOLATED QUANTUM DOTS | PHYSICS, APPLIED | PERFORMANCE | OPTICS | EMISSION | SOLID-STATE SOURCE | EFFICIENCY | Polarization | Filtration | Broadband | Quantum dots | Photons | Narrowband | Photonics | Bragg gratings | Coherence length | Unity | Efficiency | Microcavities | Excitation
Journal Article
Optics Express, ISSN 1094-4087, 11/2007, Volume 15, Issue 24, pp. 16090 - 16096
We experimentally demonstrate an ultra high Q/V nanocavity on SOI substrate. The design is based on modal adaptation within the cavity and allows to measure a... 
OPTICAL WAVE-GUIDES | OPTICS | BRAGG MIRRORS | Optics | Physics
Journal Article
Sensors (Switzerland), ISSN 1424-8220, 12/2017, Volume 17, Issue 12, p. 2813
... substances, and their fabrication process is very simple and inexpensive. In this paper, we present the experimental development of a porous silicon microcavity sensor and its use for real-time in-flow sensing application... 
In-flow sensing | Bragg reflector | Photonic sensor | Real-time sensing | Microcavity | Porous silicon | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | porous silicon | ENZYME-ACTIVITY | photonic sensor | OPTICAL-PROPERTIES | MEMBRANES | real-time sensing | in-flow sensing | RESONATOR | INSTRUMENTS & INSTRUMENTATION | microcavity | BIOSENSOR | Sensitivity | Dilution | Porous materials | Refractivity | Sensors | Real time | Detection | Optical measuring instruments
Journal Article
Applied Physics Letters, ISSN 0003-6951, 2014, Volume 104, Issue 8, p. 81113
Journal Article
ACS Applied Materials & Interfaces, ISSN 1944-8244, 07/2013, Volume 5, Issue 14, pp. 6743 - 6750
Porous Bragg microcavities formed by stacking a series of porous nanocolumnar layers with alternate low (SiO2) and high (TiO2... 
SiO | TiO | Bragg porous microcavities | GLAD thin films | liquid microsensors | optofluidics | DIMENSIONAL PHOTONIC CRYSTALS | COLOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | DEVICES | NANOSCIENCE & NANOTECHNOLOGY | SiO2 | SILICON MICROCAVITIES | TiO2
Journal Article
Lab On a Chip, ISSN 1473-0197, 09/2015, Volume 15, Issue 19, pp. 3862 - 3869
...) microcavities, which are far less susceptible to optical misalignment during device assembly than the commonly used plano-plano FP microcavities... 
Micrometers | Lasers | Chips | Lasing | Microcavities | Filled plastics | Devices | Laser arrays
Journal Article
Journal of Modern Optics, ISSN 0950-0340, 03/2019, Volume 66, Issue 6, pp. 652 - 664
We theoretically investigate the nonlinear effects in a hybrid quantum optomechanical system consisting of two optically coupled semiconductor microcavities containing a quantum dot and a Kerr nonlinear... 
03.75.Kk | 03.75.Lm | 05.40.Jc | Kerr nonlinearity | 03.65.Ta | quantum dot | 04.80.Nn | Optomechanical system | semiconductor micro-cavity | 42.50.Lc | SLOW LIGHT | MOVABLE MIRRORS | ELECTROMAGNETICALLY INDUCED TRANSPARENCY | ENTANGLEMENT | CAVITY OPTOMECHANICS | OPTICS | Stability | Quantum dots | Variations | Entanglement | Steady state | Substrates | Communications systems | Reflectors | Bragg reflectors | Optical switching | Optical properties | Hybrid systems | Nonlinearity | Microcavities | Nonlinear control
Journal Article
Applied Physics Letters, ISSN 0003-6951, 08/2016, Volume 109, Issue 6, p. 61101
Journal Article
Organic Electronics, ISSN 1566-1199, 11/2015, Volume 26, pp. 92 - 98
Journal Article
physica status solidi (c), ISSN 1862-6351, 03/2016, Volume 13, Issue 2‐3, pp. 81 - 84
We have investigated the exciton‐polariton condensation in a CuBr microcavity with HfO2/SiO2 distributed Bragg reflectors, focusing on condensation effects on polariton dispersion relations... 
CuBr | microcavity | polariton dispersion relation | diffusive Goldstone mode | polariton condensation | Diffusive Goldstone mode | Microcavity | Polariton condensation | Polariton dispersion relation | Spectroscopy | Bragg reflectors | Solid state physics | Condensing | Hafnium oxide | Microcavities | Polaritons | Dispersions
Journal Article
Optical engineering, ISSN 0091-3286, 3/2016, Volume 55, Issue 3, pp. 037102 - 037102
A type of extrinsic Fabry-Perot interferometer (EFPI) fiber optic sensor, i.e., the microcavity strain sensor, is demonstrated for embedded, high-temperature applications... 
optical-fiber sensor | extrinsic Fabry-Perot interferometer | embedded sensors | bismaleimide | strain analysis | structural monitoring | FIBER-BRAGG-GRATINGS | OPTICS
Journal Article
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