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Dr

Sam Scholten

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Overview

Availability

Dr Sam Scholten is:
Available for supervision

Works

Search Professor Sam Scholten’s works on UQ eSpace

19 works between 2020 and 2026

1 - 19 of 19 works

2026

Journal Article

Spin‐Dependent Photoluminescence in Carbon‐Based Quantum Dots

Grant, Erin S., Olorunyomi, Joseph F., Scholten, Sam C., Robertson, Islay O., Abraham, Amanda N., Srikantamurthy, Nandish H., Murdoch, Billy J., Maye, Edwin L. H., del Rosal, Blanca, Healey, Alexander J., Doherty, Cara M., Reineck, Philipp, Mulet, Xavier, Tetienne, Jean‐Philippe and Broadway, David A. (2026). Spin‐Dependent Photoluminescence in Carbon‐Based Quantum Dots. Advanced Materials, 38 (17) e18572. doi: 10.1002/adma.202518572

Spin‐Dependent Photoluminescence in Carbon‐Based Quantum Dots

2025

Journal Article

Optically detected magnetic resonance of wafer-scale hexagonal boron nitride thin films

Scholten, Sam C, Iwański, Jakub, Xing, Kaijian, Binder, Johannes, Dąbrowska, Aleksandra K, Tan, Hark H, Cheng, Tin S, Bradford, Jonathan, Mellor, Christopher J, Beton, Peter H, Novikov, Sergei V, Krotkus, Simonas, Mischke, Jan, Yengel, Emre, Henning, Alex, Pasko, Sergej, Wysmołek, Andrzej and Tetienne, Jean-Philippe (2025). Optically detected magnetic resonance of wafer-scale hexagonal boron nitride thin films. Materials for Quantum Technology, 5 (4), 045701-4. doi: 10.1088/2633-4356/ae1edf

Optically detected magnetic resonance of wafer-scale hexagonal boron nitride thin films

2025

Journal Article

A charge transfer mechanism for optically addressable solid-state spin pairs

Robertson, Islay O., Whitefield, Benjamin, Scholten, Sam C., Singh, Priya, Healey, Alexander J., Reineck, Philipp, Kianinia, Mehran, Barcza, Gergely, Ivády, Viktor, Broadway, David A., Aharonovich, Igor and Tetienne, Jean-Philippe (2025). A charge transfer mechanism for optically addressable solid-state spin pairs. Nature Physics, 21 (12), 1981-1987. doi: 10.1038/s41567-025-03091-5

A charge transfer mechanism for optically addressable solid-state spin pairs

2025

Journal Article

Imaging Magnetic Switching in Orthogonally Twisted Stacks of a van der Waals Antiferromagnet

Healey, Alexander J., Tan, Cheng, Gross, Boris, Scholten, Sam C., Xing, Kaijian, Chica, Daniel G., Johnson, Brett C., Poggio, Martino, Ziebel, Michael E., Roy, Xavier, Tetienne, Jean-Philippe and Broadway, David A. (2025). Imaging Magnetic Switching in Orthogonally Twisted Stacks of a van der Waals Antiferromagnet. ACS Nano, 19 (50), 42140-42147. doi: 10.1021/acsnano.5c12297

Imaging Magnetic Switching in Orthogonally Twisted Stacks of a van der Waals Antiferromagnet

2025

Journal Article

Violet to Near‐Infrared Optical Addressing of Spin Pairs in Hexagonal Boron Nitride

Singh, Priya, Robertson, Islay O., Scholten, Sam C., Healey, Alexander J., Abe, Hiroshi, Ohshima, Takeshi, Tan, Hark Hoe, Kianinia, Mehran, Aharonovich, Igor, Broadway, David A., Reineck, Philipp and Tetienne, Jean‐Philippe (2025). Violet to Near‐Infrared Optical Addressing of Spin Pairs in Hexagonal Boron Nitride. Advanced Materials, 37 (12) 2414846, 12. doi: 10.1002/adma.202414846

Violet to Near‐Infrared Optical Addressing of Spin Pairs in Hexagonal Boron Nitride

2025

Journal Article

Radiofrequency Receiver Based on Isotropic Solid-State Spins

Robertson, Islay O., Johnson, Brett C., Thalassinos, Giannis, Scholten, Sam C., Rietwyk, Kevin J., Gibson, Brant C., Tetienne, Jean-Philippe and Broadway, David A. (2025). Radiofrequency Receiver Based on Isotropic Solid-State Spins. ACS Photonics, 12 (2), 581-587. doi: 10.1021/acsphotonics.4c02607

Radiofrequency Receiver Based on Isotropic Solid-State Spins

2024

Journal Article

Practical limits to spatial resolution of magnetic imaging with a quantum diamond microscope

Rietwyk, Kevin J., Shaji, Alex, Robertson, Islay O., Healey, Alexander J., Singh, Priya, Scholten, Sam C., Reineck, Philipp, Broadway, David A. and Tetienne, Jean-Philippe (2024). Practical limits to spatial resolution of magnetic imaging with a quantum diamond microscope. AVS Quantum Science, 6 (4) 044402, 4. doi: 10.1116/5.0230098

Practical limits to spatial resolution of magnetic imaging with a quantum diamond microscope

2024

Journal Article

Multi-species optically addressable spin defects in a van der Waals material

Scholten, Sam C., Singh, Priya, Healey, Alexander J., Robertson, Islay O., Haim, Galya, Tan, Cheng, Broadway, David A., Wang, Lan, Abe, Hiroshi, Ohshima, Takeshi, Kianinia, Mehran, Reineck, Philipp, Aharonovich, Igor and Tetienne, Jean-Philippe (2024). Multi-species optically addressable spin defects in a van der Waals material. Nature Communications, 15 (1) 6727. doi: 10.1038/s41467-024-51129-8

Multi-species optically addressable spin defects in a van der Waals material

2024

Journal Article

Optimisation of electron irradiation for creating spin ensembles in hexagonal boron nitride

Healey, Alexander J, Singh, Priya, Robertson, Islay O, Gavin, Christopher, Scholten, Sam C, Broadway, David A, Reineck, Philipp, Abe, Hiroshi, Ohshima, Takeshi, Kianinia, Mehran, Aharonovich, Igor and Tetienne, Jean-Philippe (2024). Optimisation of electron irradiation for creating spin ensembles in hexagonal boron nitride. Materials for Quantum Technology, 4 (3), 035701. doi: 10.1088/2633-4356/ad65ae

Optimisation of electron irradiation for creating spin ensembles in hexagonal boron nitride

2024

Journal Article

Stray magnetic field imaging of thin exfoliated iron halides flakes

Meneses, Fernando, Qi, Rongrong, Healey, Alexander J., You, Yi, Robertson, Islay O., Scholten, Sam C., Keerthi, Ashok, Harrison, Gary, Bera, Achintya, Jyothilal, Hiran, Hollenberg, Lloyd C. L., Radha, Boya and Tetienne, Jean-Philippe (2024). Stray magnetic field imaging of thin exfoliated iron halides flakes. Physical Review B, 109 (6) 064416, 6. doi: 10.1103/physrevb.109.064416

Stray magnetic field imaging of thin exfoliated iron halides flakes

2023

Journal Article

Detection of Paramagnetic Spins with an Ultrathin van der Waals Quantum Sensor

Robertson, Islay O., Scholten, Sam C., Singh, Priya, Healey, Alexander J., Meneses, Fernando, Reineck, Philipp, Abe, Hiroshi, Ohshima, Takeshi, Kianinia, Mehran, Aharonovich, Igor and Tetienne, Jean-Philippe (2023). Detection of Paramagnetic Spins with an Ultrathin van der Waals Quantum Sensor. ACS Nano, 17 (14), 13408-13417. doi: 10.1021/acsnano.3c01678

Detection of Paramagnetic Spins with an Ultrathin van der Waals Quantum Sensor

2022

Journal Article

Imaging current control of magnetization in Fe<sub>3</sub>GeTe<sub>2</sub> with a widefield nitrogen-vacancy microscope

Robertson, Islay O, Tan, Cheng, Scholten, Sam C, Healey, Alexander J, Abrahams, Gabriel J, Zheng, Guolin, Manchon, Aurélien, Wang, Lan and Tetienne, Jean-Philippe (2022). Imaging current control of magnetization in Fe3GeTe2 with a widefield nitrogen-vacancy microscope. 2D Materials, 10 (1), 015023. doi: 10.1088/2053-1583/acab73

Imaging current control of magnetization in Fe<sub>3</sub>GeTe<sub>2</sub> with a widefield nitrogen-vacancy microscope

2022

Journal Article

Quantum microscopy with van der Waals heterostructures

Healey, A. J., Scholten, S. C., Yang, T., Scott, J. A., Abrahams, G. J., Robertson, I. O., Hou, X. F., Guo, Y. F., Rahman, S., Lu, Y., Kianinia, M., Aharonovich, I. and Tetienne, J.-P. (2022). Quantum microscopy with van der Waals heterostructures. Nature Physics, 19 (1), 87-91. doi: 10.1038/s41567-022-01815-5

Quantum microscopy with van der Waals heterostructures

2022

Journal Article

Aberration control in quantitative widefield quantum microscopy

Scholten, S. C., Robertson, I. O., Abrahams, G. J., Singh, Priya, Healey, A. J. and Tetienne, J.-P. (2022). Aberration control in quantitative widefield quantum microscopy. AVS Quantum Science, 4 (3) 034404, 3. doi: 10.1116/5.0114436

Aberration control in quantitative widefield quantum microscopy

2022

Journal Article

Varied Magnetic Phases in a van der Waals Easy-Plane Antiferromagnet Revealed by Nitrogen-Vacancy Center Microscopy

Healey, Alexander J., Rahman, Sharidya, Scholten, Sam C., Robertson, Islay O., Abrahams, Gabriel J., Dontschuk, Nikolai, Liu, Boqing, Hollenberg, Lloyd C. L., Lu, Yuerui and Tetienne, Jean-Philippe (2022). Varied Magnetic Phases in a van der Waals Easy-Plane Antiferromagnet Revealed by Nitrogen-Vacancy Center Microscopy. Acs Nano, 16 (8), 12580-12589. doi: 10.1021/acsnano.2c04132

Varied Magnetic Phases in a van der Waals Easy-Plane Antiferromagnet Revealed by Nitrogen-Vacancy Center Microscopy

2022

Journal Article

Imaging Current Paths in Silicon Photovoltaic Devices with a Quantum Diamond Microscope

Scholten, S.C., Abrahams, G.J., Johnson, B.C., Healey, A.J., Robertson, I.O., Simpson, D.A., Stacey, A., Onoda, S., Ohshima, T., Kho, T.C., Ibarra Michel, J., Bullock, J., Hollenberg, L.C.L. and Tetienne, J.-P. (2022). Imaging Current Paths in Silicon Photovoltaic Devices with a Quantum Diamond Microscope. Physical Review Applied, 18 (1) 014041, 1. doi: 10.1103/physrevapplied.18.014041

Imaging Current Paths in Silicon Photovoltaic Devices with a Quantum Diamond Microscope

2021

Journal Article

An integrated widefield probe for practical diamond nitrogen-vacancy microscopy

Abrahams, G. J., Scholten, S. C., Healey, A. J., Robertson, I. O., Dontschuk, N., Lim, S. Q., Johnson, B. C., Simpson, D. A., Hollenberg, L. C. L. and Tetienne, J.-P. (2021). An integrated widefield probe for practical diamond nitrogen-vacancy microscopy. Applied Physics Letters, 119 (25) 254002, 25. doi: 10.1063/5.0073320

An integrated widefield probe for practical diamond nitrogen-vacancy microscopy

2021

Journal Article

Widefield quantum microscopy with nitrogen-vacancy centers in diamond: Strengths, limitations, and prospects

Scholten, S. C., Healey, A. J., Robertson, I. O., Abrahams, G. J., Broadway, D. A. and Tetienne, J.-P. (2021). Widefield quantum microscopy with nitrogen-vacancy centers in diamond: Strengths, limitations, and prospects. Journal of Applied Physics, 130 (15) 150902. doi: 10.1063/5.0066733

Widefield quantum microscopy with nitrogen-vacancy centers in diamond: Strengths, limitations, and prospects

2020

Journal Article

Improved Current Density and Magnetization Reconstruction Through Vector Magnetic Field Measurements

Broadway, D.A., Lillie, S.E., Scholten, S.C., Rohner, D., Dontschuk, N., Maletinsky, P., Tetienne, J.-P. and Hollenberg, L.C.L. (2020). Improved Current Density and Magnetization Reconstruction Through Vector Magnetic Field Measurements. Physical Review Applied, 14 (2) 024076, 2. doi: 10.1103/physrevapplied.14.024076

Improved Current Density and Magnetization Reconstruction Through Vector Magnetic Field Measurements

Supervision

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Dr Sam Scholten is:
Available for supervision

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