Scheduled Maintenance Notice

Please note that Researcher Profiles will be undergoing scheduled maintenance on Wednesday 7th Oct, from 8:00am to 9:00am. During this time, the Researcher Profiles system will be unavailable. We apologise for any inconvenience and appreciate your understanding.

Select Publications

Journal articles

Dzurak A, 2022, 'Quantum computing based on silicon CMOS devices', , pp. 1217 - 1217, http://dx.doi.org/10.11316/jpsgaiyo.77.1.0_1217

Elnathan R; Dzurak A; Cooper-White J; Priest C; Tan HH; Withford M; Wallace G; Faraone L; Eddershaw T; Griffiths I; Fitzpatrick J; Voelcker NH, 2022, 'The Australian National Fabrication Facility: Micro/nanotechnologies from Concept to Translation to End Users', Advanced Functional Materials, 32, http://dx.doi.org/10.1002/adfm.202101995

Saraiva A; Lim WH; Yang CH; Escott CC; Laucht A; Dzurak AS, 2022, 'Materials for Silicon Quantum Dots and their Impact on Electron Spin Qubits', Advanced Functional Materials, 32, http://dx.doi.org/10.1002/adfm.202105488

Liles SD; Martins F; Miserev DS; Kiselev AA; Thorvaldson ID; Rendell MJ; Jin IK; Hudson FE; Veldhorst M; Itoh KM; Sushkov OP; Ladd TD; Dzurak AS; Hamilton AR, 2021, 'Electrical control of the g tensor of the first hole in a silicon MOS quantum dot', Physical Review B, 104, http://dx.doi.org/10.1103/PhysRevB.104.235303

Ma̧dzik MT; Laucht A; Hudson FE; Jakob AM; Johnson BC; Jamieson DN; Itoh KM; Dzurak AS; Morello A, 2021, 'Conditional quantum operation of two exchange-coupled single-donor spin qubits in a MOS-compatible silicon device', Nature Communications, 12, pp. 181, http://dx.doi.org/10.1038/s41467-020-20424-5

Hansen I; Seedhouse AE; Saraiva A; Laucht A; Dzurak AS; Yang CH, 2021, 'Pulse engineering of a global field for robust and universal quantum computation', Physical Review A, 104, pp. 062415, http://dx.doi.org/10.1103/physreva.104.062415

Seedhouse AE; Hansen I; Laucht A; Yang CH; Dzurak AS; Saraiva A, 2021, 'Quantum computation protocol for dressed spins in a global field', Physical Review B, 104, pp. 235411, http://dx.doi.org/10.1103/physrevb.104.235411

Gonzalez-Zalba MF; de Franceschi S; Charbon E; Meunier T; Vinet M; Dzurak AS, 2021, 'Scaling silicon-based quantum computing using CMOS technology', Nature Electronics, 4, pp. 872 - 884, http://dx.doi.org/10.1038/s41928-021-00681-y

Vahapoglu E; Slack-Smith JP; Leon RCC; Lim WH; Hudson FE; Day T; Tanttu T; Yang CH; Laucht A; Dzurak AS; Pla JJ, 2021, 'Single-electron spin resonance in a nanoelectronic device using a global field', Science Advances, 7, pp. eabg9158, http://dx.doi.org/10.1126/sciadv.abg9158

Huang JY; Lim WH; Leon RCC; Yang CH; Hudson FE; Escott CC; Saraiva A; Dzurak AS; Laucht A, 2021, 'A High-Sensitivity Charge Sensor for Silicon Qubits above 1 K', Nano Letters, 21, pp. 6328 - 6335, http://dx.doi.org/10.1021/acs.nanolett.1c01003

Yoneda J; Huang W; Feng M; Yang CH; Chan KW; Tanttu T; Gilbert W; Leon RCC; Hudson FE; Itoh KM; Morello A; Bartlett SD; Laucht A; Saraiva A; Dzurak AS, 2021, 'Coherent spin qubit transport in silicon', Nature Communications, 12, pp. 4114, http://dx.doi.org/10.1038/s41467-021-24371-7

Leon RCC; Yang CH; Hwang JCC; Camirand Lemyre J; Tanttu T; Huang W; Huang JY; Hudson FE; Itoh KM; Laucht A; Pioro-Ladrière M; Saraiva A; Dzurak AS, 2021, 'Bell-state tomography in a silicon many-electron artificial molecule', Nature Communications, 12, pp. 3228, http://dx.doi.org/10.1038/s41467-021-23437-w

Laucht A; Hohls F; Ubbelohde N; Gonzalez-Zalba MF; Reilly DJ; Stobbe S; Schrder T; Scarlino P; Koski JV; Dzurak A; Yang C-H; Yoneda J; Kuemmeth F; Bluhm H; Pla J; Hill C; Salfi J; Oiwa A; Muhonen JT; Verhagen E; LaHaye MD; Kim HH; Tsen AW; Culcer D; Geresdi A; Mol JA; Mohan V; Jain PK; Baugh J, 2021, 'Roadmap on quantum nanotechnologies', Nanotechnology, 32, pp. 162003, http://dx.doi.org/10.1088/1361-6528/abb333

Chan KW; Sahasrabudhe H; Huang W; Wang Y; Yang HC; Veldhorst M; Hwang JCC; Mohiyaddin FA; Hudson FE; Itoh KM; Saraiva A; Morello A; Laucht A; Rahman R; Dzurak AS, 2021, 'Exchange Coupling in a Linear Chain of Three Quantum-Dot Spin Qubits in Silicon', Nano Letters, 21, pp. 1517 - 1522, http://dx.doi.org/10.1021/acs.nanolett.0c04771

淳 米; Huang W; Feng M; Yang CH; Chan KW; Tanttu T; Gilbert W; Leon RCC; Hudson FE; 公平 伊; Morello A; Bartlett SD; Laucht A; Saraiva A; Dzurak AS, 2021, 'シリコンスピン量子ビットの位相コヒーレント輸送', , pp. 984 - 984, http://dx.doi.org/10.11316/jpsgaiyo.76.2.0_984

Seedhouse AE; Tanttu T; Leon RCC; Zhao R; Tan KY; Hensen B; Hudson FE; Itoh KM; Yoneda J; Yang CH; Morello A; Laucht A; Coppersmith SN; Saraiva A; Dzurak AS, 2021, 'Pauli Blockade in Silicon Quantum Dots with Spin-Orbit Control', PRX Quantum, 2, http://dx.doi.org/10.1103/prxquantum.2.010303

Gilbert W; Saraiva A; Lim WH; Yang CH; Laucht A; Bertrand B; Rambal N; Hutin L; Escott CC; Vinet M; Dzurak AS, 2020, 'Single-Electron Operation of a Silicon-CMOS 2 × 2 Quantum Dot Array with Integrated Charge Sensing', Nano Letters, 20, pp. 7882 - 7888, http://dx.doi.org/10.1021/acs.nanolett.0c02397

Madzi MT; Lad TD; Hudso FE; Ito KM; Jako AM; Johnso BC; McCallu JC; Jamieso DN; Dzura AS; Laucht A; Morello A, 2020, 'Controllable freezing of the nuclear spin bath in a single-atom spin qubit', Science Advances, 6, http://dx.doi.org/10.1126/sciadv.aba3442

Yang CH; Leon RCC; Hwang JCC; Saraiva A; Tanttu T; Huang W; Camirand Lemyre J; Chan KW; Tan KY; Hudson FE; Itoh KM; Morello A; Pioro-Ladrière M; Laucht A; Dzurak AS, 2020, 'Operation of a silicon quantum processor unit cell above one kelvin', Nature, 580, pp. 350 - 354, http://dx.doi.org/10.1038/s41586-020-2171-6

Asaad S; Mourik V; Joecker B; Johnson MAI; Baczewski AD; Firgau HR; Mądzik MT; Schmitt V; Pla JJ; Hudson FE; Itoh KM; McCallum JC; Dzurak AS; Laucht A; Morello A, 2020, 'Coherent electrical control of a single high-spin nucleus in silicon', Nature, 579, pp. 205 - 209, http://dx.doi.org/10.1038/s41586-020-2057-7

Leon RCC; Yang CH; Hwang JCC; Lemyre JC; Tanttu T; Huang W; Chan KW; Tan KY; Hudson FE; Itoh KM; Morello A; Laucht A; Pioro-Ladrière M; Saraiva A; Dzurak AS, 2020, 'Coherent spin control of s-, p-, d- and f-electrons in a silicon quantum dot', Nature Communications, 11, pp. 797, http://dx.doi.org/10.1038/s41467-019-14053-w

Hensen B; Wei Huang W; Yang C-H; Wai Chan K; Yoneda J; Tanttu T; Hudson FE; Laucht A; Itoh KM; Ladd TD; Morello A; Dzurak AS, 2020, 'A silicon quantum-dot-coupled nuclear spin qubit', Nature Nanotechnology, 15, pp. 13 - 17, http://dx.doi.org/10.1038/s41565-019-0587-7

Zhao R; Tanttu T; Tan KY; Hensen B; Chan KW; Hwang JCC; Leon RCC; Yang CH; Gilbert W; Hudson FE; Itoh KM; Kiselev AA; Ladd TD; Morello A; Laucht A; Dzurak AS, 2019, 'Single-spin qubits in isotopically enriched silicon at low magnetic field', Nature Communications, 10, pp. 5500, http://dx.doi.org/10.1038/s41467-019-13416-7

Dzurak A, 2019, 'Silicon integration for quantum sensing', Nature Electronics, 2, pp. 266 - 267, http://dx.doi.org/10.1038/s41928-019-0278-2

Tenberg SB; Asaad S; Madzik MT; Johnson MAI; Joecker B; Laucht A; Hudson FE; Itoh KM; Jakob AM; Johnson BC; Jamieson DN; McCallum JC; Dzurak AS; Joynt R; Morello A, 2019, 'Electron spin relaxation of single phosphorus donors in metal-oxide-semiconductor nanoscale devices', Physical Review B, 99, http://dx.doi.org/10.1103/PhysRevB.99.205306

Zeng J; Yang CH; Dzurak AS; Barnes E, 2019, 'Geometric formalism for constructing arbitrary single-qubit dynamically corrected gates', Physical Review A, 99, pp. 052321, http://dx.doi.org/10.1103/physreva.99.052321

Tanttu T; Hensen B; Chan KW; Yang CH; Huang WW; Fogarty M; Hudson F; Itoh K; Culcer D; Laucht A; Morello A; Dzurak A, 2019, 'Controlling Spin-Orbit Interactions in Silicon Quantum Dots Using Magnetic Field Direction', Physical Review X, 9, pp. 021028, http://dx.doi.org/10.1103/physrevx.9.021028

Huang C-H; Yang C-H; Chen C-C; Dzurak AS; Goan H-S, 2019, 'High-fidelity and robust two-qubit gates for quantum-dot spin qubits in silicon', Physical Review A, 99, pp. 042310, http://dx.doi.org/10.1103/physreva.99.042310

Huang W; Yang CH; Chan KW; Tanttu T; Hensen B; Leon RCC; Fogarty MA; Hwang JCC; Hudson FE; Itoh KM; Morello A; Laucht A; Dzurak AS, 2019, 'Fidelity benchmarks for two-qubit gates in silicon', Nature, 569, pp. 532 - 536, http://dx.doi.org/10.1038/s41586-019-1197-0

West A; Hensen B; Jouan A; Tanttu T; Yang C-H; Rossi A; Gonzalez-Zalba MF; Hudson F; Morello A; Reilly DJ; Dzurak AS, 2019, 'Gate-based single-shot readout of spins in silicon', Nature Nanotechnology, 14, pp. 437 - 441, http://dx.doi.org/10.1038/s41565-019-0400-7

Yang CH; Chan KW; Harper R; Huang W; Evans T; Hwang JCC; Hensen B; Laucht A; Tanttu T; Hudson FE; Flammia ST; Itoh KM; Morello A; Bartlett SD; Dzurak AS, 2019, 'Silicon qubit fidelities approaching incoherent noise limits via pulse engineering', Nature Electronics, 2, pp. 151 - 158, http://dx.doi.org/10.1038/s41928-019-0234-1

Jenei M; Potanina E; Zhao R; Tan KY; Rossi A; Tanttu T; Chan KW; Sevriuk V; Möttönen M; Dzurak A, 2019, 'Waiting time distributions in a two-level fluctuator coupled to a superconducting charge detector', Physical Review Research, 1, http://dx.doi.org/10.1103/physrevresearch.1.033163

Ruskov R; Veldhorst M; Dzurak AS; Tahan C, 2018, 'Electron g -factor of valley states in realistic silicon quantum dots', Physical Review B, 98, http://dx.doi.org/10.1103/PhysRevB.98.245424

Fogarty MA; Chan KW; Hensen B; Huang W; Tanttu T; Yang CH; Laucht A; Veldhorst M; Hudson FE; Itoh KM; Culcer D; Ladd TD; Morello A; Dzurak AS, 2018, 'Integrated silicon qubit platform with single-spin addressability, exchange control and single-shot singlet-triplet readout', Nature Communications, 9, pp. 4370, http://dx.doi.org/10.1038/s41467-018-06039-x

Muhonen JT; Dehollain JP; Laucht A; Simmons S; Kalra R; Hudson FE; Dzurak AS; Morello A; Jamieson DN; McCallum JC; Itoh KM, 2018, 'Coherent control via weak measurements in P 31 single-atom electron and nuclear spin qubits', Physical Review B, 98, http://dx.doi.org/10.1103/PhysRevB.98.155201

Chan KW; Huang W; Yang CH; Hwang JCC; Hensen B; Tanttu T; Hudson FE; Itoh KM; Laucht A; Morello A; Dzurak AS, 2018, 'Assessment of a Silicon Quantum Dot Spin Qubit Environment via Noise Spectroscopy', Physical Review Applied, 10, pp. 044017, http://dx.doi.org/10.1103/physrevapplied.10.044017

Liles SD; Li R; Yang CH; Hudson FE; Veldhorst M; Dzurak AS; Hamilton AR, 2018, 'Spin and orbital structure of the first six holes in a silicon metal-oxide-semiconductor quantum dot', Nature Communications, 9, pp. 3255, http://dx.doi.org/10.1038/s41467-018-05700-9

Rossi A; Klochan J; Timoshenko J; Hudson FE; Möttönen M; Rogge S; Dzurak AS; Kashcheyevs V; Tettamanzi GC, 2018, 'Gigahertz Single-Electron Pumping Mediated by Parasitic States', Nano Letters, 18, pp. 4141 - 4147, http://dx.doi.org/10.1021/acs.nanolett.8b00874

Tagliaferri MLV; Bavdaz PL; Huang W; Dzurak AS; Culcer D; Veldhorst M, 2018, 'Impact of valley phase and splitting on readout of silicon spin qubits', Physical Review B, 97, http://dx.doi.org/10.1103/PhysRevB.97.245412

Ferdous R; Chan KW; Veldhorst M; Hwang JCC; Yang CH; Sahasrabudhe H; Klimeck G; Morello A; Dzurak AS; Rahman R, 2018, 'Interface-induced spin-orbit interaction in silicon quantum dots and prospects for scalability', Physical Review B, 97, pp. 241401, http://dx.doi.org/10.1103/physrevb.97.241401

Jones C; Fogarty MA; Morello A; Gyure MF; Dzurak AS; Ladd TD, 2018, 'Logical Qubit in a Linear Array of Semiconductor Quantum Dots', Physical Review X, 8, http://dx.doi.org/10.1103/PhysRevX.8.021058

Veldhorst M; Eenink HGJ; Yang CH; Dzurak AS, 2017, 'Silicon CMOS architecture for a spin-based quantum computer', Nature Communications, 8, pp. 1766, http://dx.doi.org/10.1038/s41467-017-01905-6

Zhao R; Rossi A; Giblin SP; Fletcher JD; Hudson FE; Möttönen M; Kataoka M; Dzurak AS, 2017, 'Thermal-Error Regime in High-Accuracy Gigahertz Single-Electron Pumping', Physical Review Applied, 8, http://dx.doi.org/10.1103/PhysRevApplied.8.044021

Huang W; Veldhorst M; Zimmerman NM; Dzurak AS; Culcer D, 2017, 'Electrically driven spin qubit based on valley mixing (vol 95, 075103, 2017)', PHYSICAL REVIEW B, 96, http://dx.doi.org/10.1103/PhysRevB.96.159901

Hwang JCC; Yang CH; Veldhorst M; Hendrickx N; Fogarty MA; Huang W; Hudson FE; Morello A; Dzurak AS, 2017, 'Impact of g-factors and valleys on spin qubits in a silicon double quantum dot', Physical Review B, 96, pp. 045302, http://dx.doi.org/10.1103/physrevb.96.045302

Rossi A; Zhao R; Dzurak AS; Gonzalez-Zalba MF, 2017, 'Dispersive readout of a silicon quantum dot with an accumulation-mode gate sensor', Applied Physics Letters, 110, http://dx.doi.org/10.1063/1.4984224

Freer S; Simmons S; Laucht A; Muhonen JT; Dehollain JP; Kalra R; Mohiyaddin FA; Hudson FE; Itoh KM; McCallum JC; Jamieson DN; Dzurak AS; Morello A; Dehollain Lorenzana J, 2017, 'A single-atom quantum memory in silicon', Quantum Science and Technology, 2, pp. 015009, http://dx.doi.org/10.1088/2058-9565/aa63a4

Huang W; Veldhorst M; Zimmerman NM; Dzurak AS; Culcer D, 2017, 'Electrically driven spin qubit based on valley mixing', Physical Review B, 95, http://dx.doi.org/10.1103/PhysRevB.95.075403

Laucht A; Kalra R; Simmons S; Dehollain JP; Muhonen JT; Mohiyaddin FA; Freer S; Hudson FE; Itoh KM; Jamieson DN; McCallum JC; Dzurak AS; Morello A, 2017, 'A dressed spin qubit in silicon', Nature Nanotechnology, 12, pp. 61 - 66, http://dx.doi.org/10.1038/nnano.2016.178

Gamble JK; Harvey-Collard P; Jacobson NT; Baczewski AD; Nielsen E; Maurer L; Montaño I; Rudolph M; Carroll MS; Yang CH; Rossi A; Dzurak AS; Muller RP, 2016, 'Valley splitting of single-electron Si MOS quantum dots', Applied Physics Letters, 109, pp. 253101, http://dx.doi.org/10.1063/1.4972514


Back to profile page