The authors demonstrate a simple method to achieve local tuning of optical modes in GaAs photonic crystal nanocavities by continuous wave laser-assisted oxidation in air atmosphere. By irradiation with a focused laser beam at power levels of a few tens of milliwatts, photonic crystal nanocavity modes shift to shorter wavelengths by up to 2.5 nm. The mode shifts can be controlled either by varying the laser power or by iterating laser-assisted oxidation steps and are well explained by finite-element-method and finite-difference time-domain simulations. This method provides a simple route to achieve fine spectral tuning of individual nanocavities for photonic devices
We have developed a wet chemical digital etching technique for tuning the resonant wavelengths of ph...
The authors experimentally investigate the effects of atomic layer deposition (ALD) and laser-assist...
Photonic crystal nanocavities play an important part in the future of nanophotonics. For many system...
The authors demonstrate a simple method to achieve local tuning of optical modes in GaAs photonic cr...
The authors demonstrate a simple method to achieve local tuning of optical modes in GaAs photonic cr...
The authors demonstrate a simple method to achieve local tuning of optical modes in GaAs photonic cr...
The authors demonstrate a simple method to achieve local tuning of optical modes in GaAs photonic cr...
The authors demonstrate a simple method to achieve local tuning of optical modes in GaAs photonic cr...
A method to achieve photoinduced tuning of PhC nanocavity modes is discussed and implemented. It is ...
A method to achieve photoinduced tuning of PhC nanocavity modes is discussed and implemented. It is ...
A method to achieve photoinduced tuning of PhC nanocavity modes is discussed and implemented. It is ...
A method to achieve photoinduced tuning of PhC nanocavity modes is discussed and implemented. It is ...
The authors demonstrate a technique to achieve high-precision tuning of photonic crystal nanocavitie...
A method to achieve photoinduced tuning of PhC nanocavity modes is discussed and implemented. It is ...
A method to achieve photoinduced tuning of PhC nanocavity modes is discussed and implemented. It is ...
We have developed a wet chemical digital etching technique for tuning the resonant wavelengths of ph...
The authors experimentally investigate the effects of atomic layer deposition (ALD) and laser-assist...
Photonic crystal nanocavities play an important part in the future of nanophotonics. For many system...
The authors demonstrate a simple method to achieve local tuning of optical modes in GaAs photonic cr...
The authors demonstrate a simple method to achieve local tuning of optical modes in GaAs photonic cr...
The authors demonstrate a simple method to achieve local tuning of optical modes in GaAs photonic cr...
The authors demonstrate a simple method to achieve local tuning of optical modes in GaAs photonic cr...
The authors demonstrate a simple method to achieve local tuning of optical modes in GaAs photonic cr...
A method to achieve photoinduced tuning of PhC nanocavity modes is discussed and implemented. It is ...
A method to achieve photoinduced tuning of PhC nanocavity modes is discussed and implemented. It is ...
A method to achieve photoinduced tuning of PhC nanocavity modes is discussed and implemented. It is ...
A method to achieve photoinduced tuning of PhC nanocavity modes is discussed and implemented. It is ...
The authors demonstrate a technique to achieve high-precision tuning of photonic crystal nanocavitie...
A method to achieve photoinduced tuning of PhC nanocavity modes is discussed and implemented. It is ...
A method to achieve photoinduced tuning of PhC nanocavity modes is discussed and implemented. It is ...
We have developed a wet chemical digital etching technique for tuning the resonant wavelengths of ph...
The authors experimentally investigate the effects of atomic layer deposition (ALD) and laser-assist...
Photonic crystal nanocavities play an important part in the future of nanophotonics. For many system...