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Richard J Warburton

Explore the profile of Richard J Warburton including associated specialties, affiliations and a list of published articles. Areas
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Articles 42
Citations 354
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Recent Articles
1.
Spinnler C, Nguyen G, Wang Y, Zhai L, Javadi A, Erbe M, et al.
Nat Commun . 2025 Mar; 16(1):2540. PMID: 40087287
No abstract available.
2.
Geyer S, Hetenyi B, Bosco S, Camenzind L, Eggli R, Fuhrer A, et al.
Nat Phys . 2024 Dec; 20(7):1152-1157. PMID: 39664598
Semiconductor spin qubits offer the potential to employ industrial transistor technology to produce large-scale quantum computers. Silicon hole spin qubits benefit from fast all-electrical qubit control and sweet spots to...
3.
Yurgens V, Fontana Y, Corazza A, Shields B, Maletinsky P, Warburton R
npj Quantum Inf . 2024 Nov; 10(1):112. PMID: 39525946
The nitrogen-vacancy center in diamond is an attractive resource for the generation of remote entangled states owing to its optically addressable and long-lived electronic spin. However, its low native fraction...
4.
Spinnler C, Nguyen G, Wang Y, Zhai L, Javadi A, Erbe M, et al.
Nat Commun . 2024 Nov; 15(1):9509. PMID: 39496620
A promising route towards the deterministic creation and annihilation of single-phonons is to couple a single-photon emitter to a mechanical resonator. The challenge lies in reaching the resolved-sideband regime with...
5.
Tomm N, Antoniadis N, Janovitch M, Brunelli M, Schott R, Valentin S, et al.
Phys Rev Lett . 2024 Sep; 133(8):083602. PMID: 39241708
A quantum emitter interacting with photons in a single optical-mode constitutes a one-dimensional atom. A coherent and efficiently coupled one-dimensional atom provides a large nonlinearity, enabling photonic quantum gates. Achieving...
6.
Leisgang N, Miserev D, Mattiat H, Schneider L, Sponfeldner L, Watanabe K, et al.
Phys Rev Lett . 2024 Jul; 133(2):026501. PMID: 39073934
Mobile electrons in the semiconductor monolayer MoS_{2} form a ferromagnetic state at low temperature. The Fermi sea consists of two circles: one at the K point, the other at the...
7.
Nguyen G, Spinnler C, Hogg M, Zhai L, Javadi A, Schrader C, et al.
Phys Rev Lett . 2023 Dec; 131(21):210805. PMID: 38072607
A spin-photon interface should operate with both coherent photons and a coherent spin to enable cluster-state generation and entanglement distribution. In high-quality devices, self-assembled GaAs quantum dots are near-perfect emitters...
8.
Bosco S, Geyer S, Camenzind L, Eggli R, Fuhrer A, Warburton R, et al.
Phys Rev Lett . 2023 Nov; 131(19):197001. PMID: 38000439
The spin-orbit interaction in spin qubits enables spin-flip transitions, resulting in Rabi oscillations when an external microwave field is resonant with the qubit frequency. Here, we introduce an alternative driving...
9.
Antoniadis N, Hogg M, Stehl W, Javadi A, Tomm N, Schott R, et al.
Nat Commun . 2023 Jul; 14(1):3977. PMID: 37407552
Rapid, high-fidelity single-shot readout of quantum states is a ubiquitous requirement in quantum information technologies. For emitters with a spin-preserving optical transition, spin readout can be achieved by driving the...
10.
Tomm N, Mahmoodian S, Antoniadis N, Schott R, Valentin S, Wieck A, et al.
Nat Phys . 2023 Jun; 19(6):857-862. PMID: 37323806
The interaction between photons and a single two-level atom constitutes a fundamental paradigm in quantum physics. The nonlinearity provided by the atom leads to a strong dependence of the light-matter...