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C J Ballance

Showing results (1-10 of 19) with videos related to

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Optics Letters|November 28, 2013
Injection locking of two frequency-doubled lasers with 3.2 GHz offset for driving Raman transitions with low photon scattering in 43Ca+N M Linke, C J Ballance, D M Lucas
Optics Letters|September 16, 2015
Optical injection and spectral filtering of high-power ultraviolet laser diodesV M Schäfer, C J Ballance, C J Tock, et al.
Physical Review Letters|August 20, 2016
High-Fidelity Quantum Logic Gates Using Trapped-Ion Hyperfine QubitsC J Ballance, T P Harty, N M Linke, et al.
The Review of Scientific Instruments|June 6, 2018
A short response time atomic source for trapped ion experimentsT G Ballance, J F Goodwin, B Nichol, et al.
Physical Review Letters|October 15, 2016
High-Fidelity Trapped-Ion Quantum Logic Using Near-Field MicrowavesT P Harty, M A Sepiol, D T C Allcock, et al.
The Review of Scientific Instruments|May 3, 2019
Magnetic field stabilization system for atomic physics experimentsB Merkel, K Thirumalai, J E Tarlton, et al.
Nature|March 2, 2018
Fast quantum logic gates with trapped-ion qubitsV M Schäfer, C J Ballance, K Thirumalai, et al.
Physical Review Letters|September 10, 2020
Benchmarking a High-Fidelity Mixed-Species Entangling GateA C Hughes, V M Schäfer, K Thirumalai, et al.
Nature|September 7, 2022
An elementary quantum network of entangled optical atomic clocksB C Nichol, R Srinivas, D P Nadlinger, et al.
Physical Review Letters|December 15, 2023
Breaking the Entangling Gate Speed Limit for Trapped-Ion Qubits Using a Phase-Stable Standing WaveS Saner, O Băzăvan, M Minder, et al.
Pageof 2

Showing results (1-10 of 19) with videos related to

Sort By:
Pageof 2
Optics Letters|November 28, 2013
Injection locking of two frequency-doubled lasers with 3.2 GHz offset for driving Raman transitions with low photon scattering in 43Ca+N M Linke, C J Ballance, D M Lucas
Optics Letters|September 16, 2015
Optical injection and spectral filtering of high-power ultraviolet laser diodesV M Schäfer, C J Ballance, C J Tock, et al.
Physical Review Letters|August 20, 2016
High-Fidelity Quantum Logic Gates Using Trapped-Ion Hyperfine QubitsC J Ballance, T P Harty, N M Linke, et al.
The Review of Scientific Instruments|June 6, 2018
A short response time atomic source for trapped ion experimentsT G Ballance, J F Goodwin, B Nichol, et al.
Physical Review Letters|October 15, 2016
High-Fidelity Trapped-Ion Quantum Logic Using Near-Field MicrowavesT P Harty, M A Sepiol, D T C Allcock, et al.
The Review of Scientific Instruments|May 3, 2019
Magnetic field stabilization system for atomic physics experimentsB Merkel, K Thirumalai, J E Tarlton, et al.
Nature|March 2, 2018
Fast quantum logic gates with trapped-ion qubitsV M Schäfer, C J Ballance, K Thirumalai, et al.
Physical Review Letters|September 10, 2020
Benchmarking a High-Fidelity Mixed-Species Entangling GateA C Hughes, V M Schäfer, K Thirumalai, et al.
Nature|September 7, 2022
An elementary quantum network of entangled optical atomic clocksB C Nichol, R Srinivas, D P Nadlinger, et al.
Physical Review Letters|December 15, 2023
Breaking the Entangling Gate Speed Limit for Trapped-Ion Qubits Using a Phase-Stable Standing WaveS Saner, O Băzăvan, M Minder, et al.
Pageof 2