The ability to prepare, optically read out and coherently control single quantum states is a key requirement for quantum information processing. Optically active solid-state emitters have emerged as promising candidates with their prospects for on-chip integration as quantum nodes and sources of coherent photons connecting these nodes. Under a strongly driving resonant laser field, such quantum emitters can exhibit quantum behaviour such as Autler–Townes splitting and the Mollow triplet spectrum. Here we demonstrate coherent control of a strongly driven optical transition in silicon vacancy centre in diamond. Rapid optical detection of photons enabled the observation of time-resolved coherent Rabi oscillations and the Mollow triplet spectru...
The nitrogen-vacancy (NV) center in diamond has garnered great interest over the past decade as its ...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
In the first half of this work, we employ multidimensional coherent spectroscopy (MDCS) to show that...
© 2017 The Author(s). The ability to prepare, optically read out and coherently control single quant...
We demonstrate coherent control of the optical transition of single nitrogen-vacancy defect centers ...
The silicon-vacancy (SiV−) color center in diamond has attracted attention because of its unique opt...
Photon interference among distant quantum emitters is a promising method to generate large scale qua...
Strong light-matter interactions are critical for quantum technologies based on light, such as memor...
Spin impurities in diamond can be versatile tools for a wide range of solid-state-based quantum tech...
We demonstrate that silicon-vacancy (SiV) centers in diamond can be used to efficiently generate coh...
Single-quantum emitters emit only one photon at a time, but the properties of the photon depend on h...
Spin impurities in diamond have emerged as a promising building block in a wide range of solid-state...
Quantum memories are a key technology enabling arbitrarily-scalable optical quantum information proc...
Resonant excitation of solid state quantum emitters has the potential to deterministically excite a ...
Single-quantum emitters emit only one photon at a time(1,2), but the properties of the photon depend...
The nitrogen-vacancy (NV) center in diamond has garnered great interest over the past decade as its ...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
In the first half of this work, we employ multidimensional coherent spectroscopy (MDCS) to show that...
© 2017 The Author(s). The ability to prepare, optically read out and coherently control single quant...
We demonstrate coherent control of the optical transition of single nitrogen-vacancy defect centers ...
The silicon-vacancy (SiV−) color center in diamond has attracted attention because of its unique opt...
Photon interference among distant quantum emitters is a promising method to generate large scale qua...
Strong light-matter interactions are critical for quantum technologies based on light, such as memor...
Spin impurities in diamond can be versatile tools for a wide range of solid-state-based quantum tech...
We demonstrate that silicon-vacancy (SiV) centers in diamond can be used to efficiently generate coh...
Single-quantum emitters emit only one photon at a time, but the properties of the photon depend on h...
Spin impurities in diamond have emerged as a promising building block in a wide range of solid-state...
Quantum memories are a key technology enabling arbitrarily-scalable optical quantum information proc...
Resonant excitation of solid state quantum emitters has the potential to deterministically excite a ...
Single-quantum emitters emit only one photon at a time(1,2), but the properties of the photon depend...
The nitrogen-vacancy (NV) center in diamond has garnered great interest over the past decade as its ...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
In the first half of this work, we employ multidimensional coherent spectroscopy (MDCS) to show that...