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Diamond-based Fabry-Perot microcavities for quantum networks
Stefan Bogdanovic
QID/Hanson Lab
Research output
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Thesis
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Dissertation (TU Delft)
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INIS
diamonds
100%
nitrogen
100%
vacancies
100%
cavities
64%
fabrication
35%
quantum entanglement
28%
spin
28%
photons
28%
emission
21%
mirrors
21%
microwave radiation
14%
membranes
14%
phonons
14%
quantum information
14%
distribution
14%
coupling
14%
atoms
14%
implementation
14%
architecture
14%
design
7%
operation
7%
carbon
7%
bonding
7%
distance
7%
matrices
7%
carbon 13
7%
optical properties
7%
qubits
7%
delivery
7%
readout systems
7%
quantum states
7%
line widths
7%
probability
7%
volume
7%
defects
7%
cryogenics
7%
crystals
7%
probes
7%
performance
7%
quantum computing
7%
length
7%
signals
7%
extraction
7%
slabs
7%
Physics
Nitrogen
100%
Diamonds
100%
Fabrication
38%
Mirror
23%
Spin
15%
Quantum Information
15%
Microwave
15%
Phonon
15%
Membrane
15%
Linewidth
7%
Optical Properties
7%
Arrays
7%
Quantum Communication
7%
Spintronics
7%
Magnitude
7%
Nitrogen Atom
7%
Communications
7%
Atom
7%
Distance
7%
Quantum Dot
7%
Photonics
7%
Quantum Computing
7%
Vibration
7%
Volume
7%
Carbon 14
7%
Crystals
7%
Temperature
7%
Cryogenic Temperature
7%
Probability Theory
7%
Nuclear Spin
7%
Performance
7%
Material Science
Diamond
100%
Temperature
18%
Membrane
18%
Linewidth
9%
Optical Property
9%
Crystals
9%
Keyphrases
Zero-phonon Line
16%
Purcell Enhancement
8%
Cavity Linewidth
8%
Optically Active Defects
8%
Diamond Crystal
8%
Emission Probability
8%
Microwave Signal
8%
Photon Extraction
8%
Unique Marker
8%
Experimental Capability
8%
Low Emission
8%
Secret Key Distribution
8%
Stripline
8%
Mode Volume
8%
Perot
8%
Distributed Quantum Computing
8%
Quantum Communication Channel
8%
Mode Structure
8%
Engineering
Stripline
10%
Nitrogen Atom
10%
Diamond Crystal
10%
Optically Active Defect
10%