Single photon source (SPS) providing nonclassical light states on demand is one of the key technologies for the application of quantum communication and optical quantum computer. In this paper, room temperature electrical control of single photon emission from defects at 4H-SiC surface is presented. Planar-type 4H-SiC p+nn+ diodes are fabricated and defects that act as SPS are formed on the surface of n-type epi-layer by field oxidation process. The photon emission properties of SPSs are investigated using a home-built confocal microscopy. Results show that the electroluminescence (EL) intensity of SPS can be controlled by minority carrier injection of forward bias voltages, while the photoluminescence (PL) intensity of SPS can be controlle...
In-plain pi(n-)n diodes were fabricated on n-type epitaxial 4H-SiC layer grown on a n-type 4H-SiC su...
Radiation centers that are generated on the surface of SiC crystals [surface single-photon sources (...
Defects are common in many materials and some were regarded for years as detrimental. Recently with ...
© 2016 Dr. Alexander LohrmannSingle-photon sources are considered a key component for future quantum...
Luminescence centers formed in the vicinity of SiC surface are expected to be utilized as Single Pho...
Single photon sources (SPS) are an important building block for realizing quantum technologies for c...
Reliable single-photon emission is crucial for realizing efficient spin-photon entanglement and scal...
Bright room temperature single photon emission from isolated defects in bulk 4H silicon carbide (SiC...
We present single photon sources (SPSs) embedded in 4H-SiC metal-oxide-semiconductor fieldeffect tra...
Generation of single photons has been demonstrated in several systems. However, none of them satisfi...
In this work, we present the creation and characterisation of single photon emitters at the surface ...
This paper summarizes key findings in single-photon generation from deep level defects in silicon ca...
Color centers in silicon carbide have recently emerged as one of the most promising emitters for bri...
Electrically driven single-photon emitting devices have immediate applications in quantum cryptograp...
4H-SiC pin-diodes are fabricated and the surface SPSs formed in the pin diodes are investigated usin...
In-plain pi(n-)n diodes were fabricated on n-type epitaxial 4H-SiC layer grown on a n-type 4H-SiC su...
Radiation centers that are generated on the surface of SiC crystals [surface single-photon sources (...
Defects are common in many materials and some were regarded for years as detrimental. Recently with ...
© 2016 Dr. Alexander LohrmannSingle-photon sources are considered a key component for future quantum...
Luminescence centers formed in the vicinity of SiC surface are expected to be utilized as Single Pho...
Single photon sources (SPS) are an important building block for realizing quantum technologies for c...
Reliable single-photon emission is crucial for realizing efficient spin-photon entanglement and scal...
Bright room temperature single photon emission from isolated defects in bulk 4H silicon carbide (SiC...
We present single photon sources (SPSs) embedded in 4H-SiC metal-oxide-semiconductor fieldeffect tra...
Generation of single photons has been demonstrated in several systems. However, none of them satisfi...
In this work, we present the creation and characterisation of single photon emitters at the surface ...
This paper summarizes key findings in single-photon generation from deep level defects in silicon ca...
Color centers in silicon carbide have recently emerged as one of the most promising emitters for bri...
Electrically driven single-photon emitting devices have immediate applications in quantum cryptograp...
4H-SiC pin-diodes are fabricated and the surface SPSs formed in the pin diodes are investigated usin...
In-plain pi(n-)n diodes were fabricated on n-type epitaxial 4H-SiC layer grown on a n-type 4H-SiC su...
Radiation centers that are generated on the surface of SiC crystals [surface single-photon sources (...
Defects are common in many materials and some were regarded for years as detrimental. Recently with ...