Optically Detected Adiabatic Inversion in Phosphorescent Triplet States and the Measurement of Intramolecular Energy Transfer Processes
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- Type
- article
- Published
- 1972-03-01
- Cited by
- 23
- References
- 12
- Access
- Open access
- OpenAlex
- https://openalex.org/W2075902657
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:96579940
Keywords
Phosphorescence, Intersystem crossing, Population inversion, Triplet state, Adiabatic process
References
- Microwave induced delayed phosphorescence
- Scheme for Sensitive Nuclear Double‐Resonance Detection: Deuterium and 13C
- Phosphorescence modulation by coherent coupling to a microwave field
- Optical detection of phosphrescent triplet state endor in zero field
- Optical spin polarisation in the triplet state of naphthalene
- Microwave Induced Time‐Dependent Effects in Triplet Phosphorescence
- New Techniques in Triplet State Phosphorescence Spectroscopy: Application to the Emission of 2,3‐Dichloroquinoxaline
- Optically Detected Nuclear Quadrupole Resonance and Transferred Hyperfine Coupling via Guest–Host Interactions in Molecular Crystals
- Spectroscopic determination of the most probable intersystem crossing route in phosphorescing molecules
- Nuclear Dipole Field Quenching of Integer Spins
- The Principles of Nuclear Magnetism
Cited by
- Protein triplet states.
- Direct measurement of spin-lattice relaxation rates between triplet spin sublevels using optical detection of magnetic resonance
- FLUORESCENCE SPECTRA AND ZERO‐FIELD MAGNETIC RESONANCE OF CHLOROPHYLL a‐WATER COMPLEXES
- Prosphorescence and ODMR studies of some coronene compounds
- Investigation of the lowest triplet state of free base porphin by microwave induced changes in its fluorescence
- Internal heavy atom effect on the triplet spin sublevels of the lowest triplet state of naphthalene. I. Radiative and nonradiative decays of the spin sublevels of 1‐halonaphthalenes
- Triplet-state spin coherence in photoexcited benzil crystals at 77 K: optically detected transient nutation and adiabatic rapid passage
- Methods for optical detection of electron spin coherence in nonphosphorescent triplet states
- Electron–phonon interaction in the spectra of p‐benzoquinone in chemically mixed crystals
- High-fidelity adiabatic inversion of a ^31P electron spin qubit in natural silicon
- Breakdown of the born—oppenheimer approximation in radiative transitions
- Triplet state dynamics in polycyclic aromatic molecules
- Properties of the phosphorescent state of 1,2,4,5-tetrabromobenzene as determined by optically detected magnetic resonance
- On the Lowest Triplet State of Substituted Benzenes. III. Optically Detected Magnetic Resonance Studies on the 3π π State of 1,2,4,5‐Tetrabromobenzene and 1,2,4,5‐Tetrachlorobenzene
- Optically detected magnetic resonance study of the lowest excited triplet state of aromatic thioketones: Xanthione
- ODMR spectroscopy of coordination compounds
- Optical properties of 3(nπ*) benzophenones in 4, 4'-dibromodiphenylether host crystals
- Kinetics of the triplet state of 2,3-dichloroquinoxaline from microwave-induced phosphorescence transients
- Doppelresonanz‐Methoden
- Hybrid Quantum Systems: Coupling Single-Molecule Magnet Qudits with Industrial Silicon Spin Qubits
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