We design extremely flexible, ultrahigh-Q, diamond-based double-heterostructure photonic crystal slab cavities by modifying the refractive index of the diamond. The refractive index changes needed for ultrahigh-Q cavities With Q similar to 10(7), are well within what can be achieved (Delta n similar to 0.02). The Q is around 30 times larger than previously reported designs in diamond. At the same time, the cavity volumes are still relatively small, at less than two cubic wavelengths. The range of parameters, cavity length and the index changes that enables an ultrahigh-Q is quite broad improving prospects for defect-tolerant quantum architecture
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
Single-crystal diamond, with its unique optical, mechanical and thermal properties, has emerged as a...
A slab two-dimensional photonic crystal in diamond is being considered for quantum information proc...
A slab two-dimensional photonic crystal in diamond is being considered for quantum information proc...
A slab two-dimensional photonic crystal in diamond is being considered for quantum information proc...
We propose a new approach for creating reconfigurable high-Q cavities in defect-free photonic crysta...
We propose a new approach for creating reconfigurable high-Q cavities in defect-free photonic crysta...
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
Photonic Crystal (PC) devices are the most exciting advancement in the field of photonics. The use o...
Photonic Crystal (PC) devices are the most exciting advancement in the field of photonics. The use o...
© 2018 Author(s). Color centers in diamond are promising spin qubits for quantum computing and quant...
We demonstrate the fabrication of photonic crystal nanobeam cavities with rectangular cross section ...
Abstract: We present a qualitative analysis of the influence of the mode volume on a planar photonic...
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
Single-crystal diamond, with its unique optical, mechanical and thermal properties, has emerged as a...
A slab two-dimensional photonic crystal in diamond is being considered for quantum information proc...
A slab two-dimensional photonic crystal in diamond is being considered for quantum information proc...
A slab two-dimensional photonic crystal in diamond is being considered for quantum information proc...
We propose a new approach for creating reconfigurable high-Q cavities in defect-free photonic crysta...
We propose a new approach for creating reconfigurable high-Q cavities in defect-free photonic crysta...
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
Photonic Crystal (PC) devices are the most exciting advancement in the field of photonics. The use o...
Photonic Crystal (PC) devices are the most exciting advancement in the field of photonics. The use o...
© 2018 Author(s). Color centers in diamond are promising spin qubits for quantum computing and quant...
We demonstrate the fabrication of photonic crystal nanobeam cavities with rectangular cross section ...
Abstract: We present a qualitative analysis of the influence of the mode volume on a planar photonic...
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
Photonic crystal cavities enable the realization of high Q-factor and low mode-volume resonators, wi...
Single-crystal diamond, with its unique optical, mechanical and thermal properties, has emerged as a...