Dr Oliver Thearle
Department |
Quantum Science & Technology |
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Email |
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Office |
Physics New 1 25 |
Research publications
Journal article
Shajilal B, Thearle O, Tranter A, Lu Y, Huntington E, Assad S, Lam P, Janousek J
12.6 dB squeezed light at 1550 nm from a bow-tie cavity for long-term high duty cycle operation
Optics Express 30, 21(2022) 37213-37223
12.6 dB squeezed light at 1550 nm from a bow-tie cavity for long-term high duty cycle operation
Optics Express 30, 21(2022) 37213-37223
Michel T, Haw J, Marangoni D, Thearle O, Vallone G, Villoresi P, Lam P, Assad S
Real-Time Source-Independent Quantum Random-Number Generator with Squeezed States
Physical Review Applied 12, 3(2019)
Real-Time Source-Independent Quantum Random-Number Generator with Squeezed States
Physical Review Applied 12, 3(2019)
Lenzini F, Janousek J, Thearle O, Villa M, Haylock B, Kasture S, Cui L, Phan H, Viet Dao D, Yonezawa H, Lam P, Huntington E, Lobino M
Integrated photonic platform for quantum information with continuous variables
Science Advances 4, 12(2018) 1-7
Integrated photonic platform for quantum information with continuous variables
Science Advances 4, 12(2018) 1-7
Thearle O, Janousek J, Armstrong S, Hosseini S, Schünemann M, Assad S, Symul T, James M, Huntington E, Ralph T, Lam P
Violation of Bell's Inequality Using Continuous Variable Measurements
Physical Review Letters 120, 4(2018) 1-5
Violation of Bell's Inequality Using Continuous Variable Measurements
Physical Review Letters 120, 4(2018) 1-5
Assad S, Thearle O, Lam P
Maximizing device-independent randomness from a Bell experiment by optimizing the measurement settings
Physical Review A: Atomic, Molecular and Optical Physics 94, 1(2016) 1-6
Maximizing device-independent randomness from a Bell experiment by optimizing the measurement settings
Physical Review A: Atomic, Molecular and Optical Physics 94, 1(2016) 1-6
Thearle O, Assad S, Symul T
Estimation of output-channel noise for continuous-variable quantum key distribution
Physical Review A - Atomic, Molecular, and Optical Physics 93, 4(2016) 1-6
Estimation of output-channel noise for continuous-variable quantum key distribution
Physical Review A - Atomic, Molecular, and Optical Physics 93, 4(2016) 1-6
Walk N, Hosseini S, Geng J, Thearle O, Haw J, Armstrong S, Assad S, Janousek J, Ralph T, Symul T, Wiseman H, Lam P
Experimental demonstration of Gaussian protocols for one-sided device-independent quantum key distribution
Optica 3, 6(2016) 634-642
Experimental demonstration of Gaussian protocols for one-sided device-independent quantum key distribution
Optica 3, 6(2016) 634-642
Conference paper
Sayat M, Kish S, Assad S, Quinlivan C, Thearle O, Lam P, Rattenbury N, Cater J
LEO-to-Ground Gaussian Modulated Continuous Variable Quantum Key Distribution
International Astronautical Congress (IAC) 73rd (2022)
LEO-to-Ground Gaussian Modulated Continuous Variable Quantum Key Distribution
International Astronautical Congress (IAC) 73rd (2022)
Michel T, Haw J, Marangon D, Thearle O, Vallone G, Villoresi P, Lam P, Assad S
Real-Time Self-Testing Quantum Random Number Generator with Non-classical States
European Conference on Optical Communication (ECOC) (2020) 1-4
Real-Time Self-Testing Quantum Random Number Generator with Non-classical States
European Conference on Optical Communication (ECOC) (2020) 1-4
Lenzini F, Janousek J, Thearle O, Villa M, Haylock B, Kasture S, Cui L, Phan H, Viet Dao D, Yonezawa H, Lam P, Huntington E, Lobino M
Squeezing in Lithium Niobate Waveguides
AOS Australian Conference on Optical Fibre Technology (ACOFT) and Australian Conference on Optics, Lasers, and Spectroscopy (ACOLS) 2019 11200(2019) 1-3
Squeezing in Lithium Niobate Waveguides
AOS Australian Conference on Optical Fibre Technology (ACOFT) and Australian Conference on Optics, Lasers, and Spectroscopy (ACOLS) 2019 11200(2019) 1-3
Chrzanowski H, Walk N, Haw J, Thearle O, Assad S, Janousek J, Hosseini S, Ralph T, Symul T, Lam P
Measurement-based noiseless linear amplification for quantum communication
Quantum and Nonlinear Optics III (2014)
Measurement-based noiseless linear amplification for quantum communication
Quantum and Nonlinear Optics III (2014)
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