photoluminescence : Related Words Words similar in meaning to photoluminescence
- radiophotoluminescence«
- phosphorescence«
- luminescence«
- fluorescence«
- photo-«
- excitation«
- photon«
- photoluminescent«
- electron«
- resonant excitation«
- photoluminesce«
- emission«
- microphotoluminescence«
- energy«
- lattice temperature«
- absorption«
- excitons«
- radiative recombination«
- optical phonons«
- carrier system«
- hole«
- polarization«
- gaas«
- semiconductor«
- coulomb«
- carrier density«
- quantum«
- picosecond«
- disorder«
- carrier«
- typical pl experiment«
- photoluminescence process«
- carrier temperature«
- barrier excitation«
- phonons«
- finite momentum«
- excitation density«
- excitation condition«
- semiconductor luminescence equation«
- carrier distribution«
- resonance fluorescence«
- semiconductor bloch equation«
- dephasing«
- relaxation process«
- acoustic phonons«
- gap semiconductor«
- scattering«
- photoexcitation«
- surplus energy«
- secondary emission«
- fluorescence spectroscopy«
- exciton«
- relaxation«
- femtosecond«
- interaction«
- spontaneous emission«
- light emission«
- valence band«
- defect«
- decay«
- excess energy«
- body system«
- technique«
- e2«
- conduction«
- triplet«
- sample«
- structure«
- lifetime«
- subband transition«
- sub-100 f time«
- strongest exciton resonance«
- special circumstance delay«
- significant quantum optical correlation«
- significant internal energy transition«
- short femtosecond«
- semiconducting wafer«
- resonant rayleigh scattering«
- resonant rayleigh«
- prefix photo-.«
- precise microscopic description«
- polarization decay«
- pl spectrum«
- pl property«
- pl experiment«
- photoluminescence life time«
- phosphorescent process«
- nonresonant excitation«
- more process«
- momentum relaxation«
- main pl peak«
- lower singlet energy«
- localized carrier«
- linear absorption spectrum«
- initial carrier distribution«
- inelastic mode«
- ideal quantum«
- hole subbands«
- free semiconductor quantum«
- free semiconductor«
- fixed phase relation«
- fictive model structure«
- fast coulomb-«
- excitonic ground«
- equivalent photon«
- emission peak experience«
- emission energy shift«
- emission dynamic«
- elevated excitation density«
- e1h1«
- crystalline inorganic semiconductor«
- coherent polarization«
- coherent contribution«
- carrier cooling«
- barrier absorption edge«
- band gap minimum«
- auxiliary loss mode«
- real material system«
- pl peak«
- photoluminescent material«
- lowest exciton resonance«
- internal energy transition«
- instantaneous decay«
- incoherent emission«
- incoherent contribution«
- flat dispersion«
- exciton population«
- excitation due«
- elevated carrier density«
- dielectric environment«
- continuum«
- similar spectral feature«
- photoluminescence spectroscopy«
- photoluminescence property«
- phonon effect«
- optical phonon energy«
- luminescence equation«
- ideal sample«
- hole population«
- extrinsic effect«
- decay lifetime«
- carrier population«
- carrier plasma«
- semiconductor laser theory«
- resonant condition«
- photoluminescence excitation«
- nonradiative recombination center«
- hole plasma«
- exponential decay function«
- exciton resonance«
- exciting photon«
- excitation photon«
- elliott formula«
- minority carrier lifetime«
- matter coupling«
- elastic process«
- carrier scattering«
- central energy«
- temperature detection«
- lifetime imaging microscopy«
- klingshirn«
- absorption event«
- phosphor thermometry«
- hot carrier«
- coherent process«
- auger recombination«
- jablonski diagram«
- energy larger«
- crystalline quality«
- generation rate«
- internal electric field«
- inorganic semiconductor«
- typical mechanism«
- light photon«
- coulomb scattering«
- additional peak«
- subband«
- radiative transition«
- formation rate«
- bandgap energy«
- probability«
- spin multiplicity«
- transition energy«
- fermi–dirac distribution«
- disorder due«
- subbands«
- intersystem crossing«
- ideal structure«
- spectral width«
- original energy«
- molecular feature«
- ideal«
- laser frequency«
- barrier«
- term symbol«
- stokes shift«
- v semiconductor«
- energy channel«
- microscopic theory«
- characteristic time«
- light«
- electron transition«
- cathodoluminescence«
- initial temperature«
- fast process«
- material parameter«
- width«
- fluorescent molecule«
- substance«
- their treatment«
- lattice vibration«
- originate«
- electronic band structure«
- scattering process«
- ple«
- material system«
- light field«
- excitation energy«
- hole pair«
- molecular system«
- light pulse«
- typical situation«
- optical filter«
- confocal microscopy«
- photonic crystal«
- decay rate«
- hyperbolic function«
- fundamental process«
- negligible amount«
- red shift«
- chemistry«
- inp«
- incoming light«
- exponential decay«
- source«
- complex phenomenon«
- temperature dependence«
- rayleigh scattering«
- emission spectrum«
- several variation«
- transition«
- laser pulse«
- surface roughness«
- reflectance«
- reabsorption«
- gallium arsenide«
- electronic property«
- gaussian distribution«
- temperature«
- biological sample«
- speckle«
- charge carrier«
- singlet«
- renormalization«
- phase«
- scale«
- model system«
- form«
- experimental condition«
- lower energy«
- detailed knowledge«
- nanosecond«
- discussion«
- theoretical approach«
- spectrometer«
- laser light«
- distribution«
- experimental method«
- gas phase«
- slow process«
- chemical substance«
- hundred«
- respect«
- low density«
- e1«
- microscopy«
- quantification«
- perturbation«
- electromagnetic radiation«
- spectroscopy«
- millisecond«
- characterisation«
- chemical composition«
- amount«
- light source«
- similar system«
- condition«
- glow«
- dispersion«
- localization«
- lattice«
- charge«
- loss«
- plasma«
- cooling«
- minute«
- ground«
- solid«
- system«
- equilibrium«
- wavelength«
- hour«
- purity«
- correlation«
- pulse«
- laser«
- atom«
- instrumentation«
- balkan«
- detection«
- fraction«
- molecule«
- momentum«
- parameter«
- intensity«
- time period«
- regime«
- ten«
- complexity«
- indication«
- 36mev«
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