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Dr

Benjamin Carey

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Overview

Availability

Dr Benjamin Carey is:
Available for supervision

Works

Search Professor Benjamin Carey’s works on UQ eSpace

39 works between 2014 and 2024

1 - 20 of 39 works

2024

Journal Article

Silicon double-disk optomechanical resonators from wafer-scale double-layered silicon-on-insulator

Navarathna, Amy, Carey, Benjamin J., Bennett, James S., Khademi, Soroush and Bowen, Warwick P. (2024). Silicon double-disk optomechanical resonators from wafer-scale double-layered silicon-on-insulator. Optics Express, 32 (23) 41376, 1-14. doi: 10.1364/oe.538819

Silicon double-disk optomechanical resonators from wafer-scale double-layered silicon-on-insulator

2024

Journal Article

Quantitative profilometric measurement of magnetostriction in thin-films

Greenall, Hamish, Carey, Benjamin J., Bulla, Douglas, Gotardo, Fernando, Harris, Glen I., Bennett, James S., Foster, Scott and Bowen, Warwick P. (2024). Quantitative profilometric measurement of magnetostriction in thin-films. Applied Surface Science, 662 160105, 1-6. doi: 10.1016/j.apsusc.2024.160105

Quantitative profilometric measurement of magnetostriction in thin-films

2024

Journal Article

Giant Faraday rotation in atomically thin semiconductors

Carey, Benjamin, Wessling, Nils Kolja, Steeger, Paul, Schmidt, Robert, Michaelis de Vasconcellos, Steffen, Bratschitsch, Rudolf and Arora, Ashish (2024). Giant Faraday rotation in atomically thin semiconductors. Nature Communications, 15 (1) 3082, 1-8. doi: 10.1038/s41467-024-47294-5

Giant Faraday rotation in atomically thin semiconductors

2023

Journal Article

Waveguide-integrated and portable optomechanical magnetometer

Gotardo, Fernando, Carey, Benjamin, Greenall, Hamish, Harris, Glen, Romero, Erick, Bulla, Douglas, Bridge, Elizabeth, Bennett, James, Foster, Scott and Bowen, Warwick (2023). Waveguide-integrated and portable optomechanical magnetometer. Optics Express, 31 (23), 37663-37672. doi: 10.1364/oe.501960

Waveguide-integrated and portable optomechanical magnetometer

2023

Journal Article

Excitonic absorption signatures of twisted bilayer WSe2 by electron energy-loss spectroscopy

Woo, Steffi Y., Zobelli, Alberto, Schneider, Robert, Arora, Ashish, Preuß, Johann A., Carey, Benjamin J., Michaelis De Vasconcellos, Steffen, Palummo, Maurizia, Bratschitsch, Rudolf and Tizei, Luiz H. G. (2023). Excitonic absorption signatures of twisted bilayer WSe2 by electron energy-loss spectroscopy. Physical Review B, 107 (15) 155429. doi: 10.1103/PhysRevB.107.155429

Excitonic absorption signatures of twisted bilayer WSe2 by electron energy-loss spectroscopy

2022

Journal Article

High-performance broadband Faraday rotation spectroscopy of 2D materials and thin magnetic films

Carey, Benjamin, Wessling, Nils Kolja, Steeger, Paul, Klusmann, Christoph, Schneider, Robert, Fix, Mario, Schmidt, Robert, Albrecht, Manfred, Michaelis de Vasconcellos, Steffen, Bratschitsch, Rudolf and Arora, Ashish (2022). High-performance broadband Faraday rotation spectroscopy of 2D materials and thin magnetic films. Small Methods, 6 (11) 2200885, 1-8. doi: 10.1002/smtd.202200885

High-performance broadband Faraday rotation spectroscopy of 2D materials and thin magnetic films

2022

Journal Article

Substrate influence on transition metal dichalcogenide monolayer exciton absorption linewidth broadening

Shao, Fuhui, Woo, Steffi Y., Wu, Nianjheng, Schneider, Robert, Mayne, Andrew J., De Vasconcellos, Steffen Michaelis, Arora, Ashish, Carey, Benjamin J., Preuß, Johann A., Bonnet, Noémie, Och, Mauro, Mattevi, Cecilia, Watanabe, Kenji, Taniguchi, Takashi, Niu, Zhichuan, Bratschitsch, Rudolf and Tizei, Luiz H. G. (2022). Substrate influence on transition metal dichalcogenide monolayer exciton absorption linewidth broadening. Physical Review Materials, 6 (7) 074005. doi: 10.1103/PhysRevMaterials.6.074005

Substrate influence on transition metal dichalcogenide monolayer exciton absorption linewidth broadening

2019

Journal Article

Room temperature CO2 reduction to solid carbon species on liquid metals featuring atomically thin ceria interfaces

Esrafilzadeh, Dorna, Zavabeti, Ali, Jalili, Rouhollah, Atkin, Paul, Choi, Jaecheol, Carey, Benjamin J., Brkljača, Robert, O’Mullane, Anthony P., Dickey, Michael D., Officer, David L., MacFarlane, Douglas R., Daeneke, Torben and Kalantar-Zadeh, Kourosh (2019). Room temperature CO2 reduction to solid carbon species on liquid metals featuring atomically thin ceria interfaces. Nature Communications, 10 (1) 865, 1367. doi: 10.1038/s41467-019-08824-8

Room temperature CO2 reduction to solid carbon species on liquid metals featuring atomically thin ceria interfaces

2018

Journal Article

Printing two-dimensional gallium phosphate out of liquid metal

Syed, Nitu, Zavabeti, Ali, Ou, Jian Zhen, Mohiuddin, Md, Pillai, Naresh, Carey, Benjamin J., Zhang, Bao Yue, Datta, Robi S., Jannat, Azmira, Haque, Farjana, Messalea, Kibret A., Xu, Chenglong, Russo, Salvy P., McConville, Chris F., Daeneke, Torben and Kalantar-Zadeh, Kourosh (2018). Printing two-dimensional gallium phosphate out of liquid metal. Nature Communications, 9 (1) 3618, 1-10. doi: 10.1038/s41467-018-06124-1

Printing two-dimensional gallium phosphate out of liquid metal

2018

Journal Article

Green Synthesis of Low-Dimensional Aluminum Oxide Hydroxide and Oxide Using Liquid Metal Reaction Media: Ultrahigh Flux Membranes

Zavabeti, Ali, Zhang, Bao Yue, de Castro, Isabela A., Ou, Jian Zhen, Carey, Benjamin J., Mohiuddin, Md, Datta, RobiS., Xu, Chenglong, Mouritz, Adrian P., McConville, Christopher F., O'Mullane, Anthony P., Daeneke, Torben and Kalantar-Zadeh, Kourosh (2018). Green Synthesis of Low-Dimensional Aluminum Oxide Hydroxide and Oxide Using Liquid Metal Reaction Media: Ultrahigh Flux Membranes. Advanced Functional Materials, 28 (44) 1804057, 1-9. doi: 10.1002/adfm.201804057

Green Synthesis of Low-Dimensional Aluminum Oxide Hydroxide and Oxide Using Liquid Metal Reaction Media: Ultrahigh Flux Membranes

2018

Journal Article

Bi2O3 monolayers from elemental liquid bismuth

Messalea, Kibret A., Carey, Benjamin J., Jannat, Azmira, Syed, Nitu, Mohiuddin, Md, Zhang, Bao Yue, Zavabeti, Ali, Ahmed, Taimur, Mahmood, Nasir, Della Gaspera, Enrico, Khoshmanesh, Khashayar, Kalantar-Zadeh, Kourosh and Daeneke, Torben (2018). Bi2O3 monolayers from elemental liquid bismuth. Nanoscale, 10 (33), 15615-15623. doi: 10.1039/c8nr03788d

Bi2O3 monolayers from elemental liquid bismuth

2018

Journal Article

Two dimensional PbMoO4: A photocatalytic material derived from a naturally non-layered crystal

Datta, Robi S., Ou, Jian Zhen, Mohiuddin, Md, Carey, Benjamin J., Zhang, Bao Yue, Khan, Hareem, Syed, Nitu, Zavabeti, Ali, Haque, Farjana, Daeneke, Torben and Kalantar-zadeh, Kourosh (2018). Two dimensional PbMoO4: A photocatalytic material derived from a naturally non-layered crystal. Nano Energy, 49, 237-246. doi: 10.1016/j.nanoen.2018.04.041

Two dimensional PbMoO4: A photocatalytic material derived from a naturally non-layered crystal

2018

Journal Article

Ultrafast Acoustofluidic Exfoliation of Stratified Crystals

Ahmed, Heba, Rezk, Amgad R., Carey, Benjamin J., Wang, Yichao, Mohiuddin, Md, Berean, Kyle J., Russo, Salvy P., Kalantar-zadeh, Kourosh and Yeo, Leslie Y. (2018). Ultrafast Acoustofluidic Exfoliation of Stratified Crystals. Advanced Materials, 30 (20) 1704756, 1-6. doi: 10.1002/adma.201704756

Ultrafast Acoustofluidic Exfoliation of Stratified Crystals

2017

Journal Article

Quasi physisorptive two dimensional tungsten oxide nanosheets with extraordinary sensitivity and selectivity to NO2

Khan, Hareem, Zavabeti, Ali, Wang, Yichao, Harrison, Christopher J., Carey, Benjamin J., Mohiuddin, Md, Chrimes, Adam F., De Castro, Isabela Alves, Zhang, Bao Yue, Sabri, Ylias M., Bhargava, Suresh K., Ou, Jian Zhen, Daeneke, Torben, Russo, Salvy P., Li, Yongxiang and Kalantar-Zadeh, Kourosh (2017). Quasi physisorptive two dimensional tungsten oxide nanosheets with extraordinary sensitivity and selectivity to NO2. Nanoscale, 9 (48), 19162-19175. doi: 10.1039/c7nr05403c

Quasi physisorptive two dimensional tungsten oxide nanosheets with extraordinary sensitivity and selectivity to NO2

2017

Journal Article

A Gallium-Based Magnetocaloric Liquid Metal Ferrofluid

De Castro, Isabela A., Chrimes, Adam F., Zavabeti, Ali, Berean, Kyle J., Carey, Benjamin J., Zhuang, Jincheng, Du, Yi, Dou, Shi X., Suzuki, Kiyonori, Shanks, Robert A., Nixon-Luke, Reece, Bryant, Gary, Khoshmanesh, Khashayar, Kalantar-Zadeh, Kourosh and Daeneke, Torben (2017). A Gallium-Based Magnetocaloric Liquid Metal Ferrofluid. Nano Letters, 17 (12), 7831-7838. doi: 10.1021/acs.nanolett.7b04050

A Gallium-Based Magnetocaloric Liquid Metal Ferrofluid

2017

Journal Article

Sonication-Assisted Synthesis of Gallium Oxide Suspensions Featuring Trap State Absorption: Test of Photochemistry

Syed, Nitu, Zavabeti, Ali, Mohiuddin, Md, Zhang, Baoyue, Wang, Yichao, Datta, Robi S., Atkin, Paul, Carey, Benjamin J., Tan, Cheng, van Embden, Joel, Chesman, Anthony S. R., Ou, Jian Zhen, Daeneke, Torben and Kalantar-zadeh, Kourosh (2017). Sonication-Assisted Synthesis of Gallium Oxide Suspensions Featuring Trap State Absorption: Test of Photochemistry. Advanced Functional Materials, 27 (43) 1702295, 1-10. doi: 10.1002/adfm.201702295

Sonication-Assisted Synthesis of Gallium Oxide Suspensions Featuring Trap State Absorption: Test of Photochemistry

2017

Journal Article

A liquid metal reaction environment for the room-temperature synthesis of atomically thin metal oxides

Zavabeti, Ali, Ou, Jian Zhen, Carey, Benjamin J., Syed, Nitu, Orrell-Trigg, Rebecca, Mayes, Edwin L. H., Xu, Chenglong, Kavehei, Omid, O'Mullane, Anthony P., Kaner, Richard B., Kalantar-Zadeh, Kourosh and Daeneke, Torben (2017). A liquid metal reaction environment for the room-temperature synthesis of atomically thin metal oxides. Science, 358 (6361), 332-335. doi: 10.1126/science.aao4249

A liquid metal reaction environment for the room-temperature synthesis of atomically thin metal oxides

2017

Journal Article

Corrigendum: Wafer-scale two-dimensional semiconductors from printed oxide skin of liquid metals

Carey, Benjamin J., Ou, Jian Zhen, Clark, Rhiannon M., Berean, Kyle J., Zavabeti, Ali, Chesman, Anthony S R, Russo, Salvy P., Lao, Desmond W M, Xu, Zai-Quan, Bao, Qiaoliang, Kavehei, Omid, Gibson, Brant C., Dickey, Michael D., Kaner, Richard B., Daeneke, Torben and Kalantar-Zadeh, Kourosh (2017). Corrigendum: Wafer-scale two-dimensional semiconductors from printed oxide skin of liquid metals. Nature Communications, 8 15116. doi: 10.1038/ncomms15116

Corrigendum: Wafer-scale two-dimensional semiconductors from printed oxide skin of liquid metals

2017

Journal Article

Wafer-scale two-dimensional semiconductors from printed oxide skin of liquid metals

Carey, Benjamin J., Ou, Jian Zhen, Clark, Rhiannon M., Berean, Kyle J., Zavabeti, Ali, Chesman, Anthony S. R., Russo, Salvy P., Lau, Desmond W. M., Xu, Zai-Quan, Bao, Qiaoliang, Kevehei, Omid, Gibson, Brant C., Dickey, Michael D., Kaner, Richard B., Daeneke, Torben and Kalantar-Zadeh, Kourosh (2017). Wafer-scale two-dimensional semiconductors from printed oxide skin of liquid metals. Nature Communications, 8 (1) 14482. doi: 10.1038/ncomms14482

Wafer-scale two-dimensional semiconductors from printed oxide skin of liquid metals

2017

Journal Article

Patterned films from exfoliated two-dimensional transition metal dichalcogenides assembled at a liquid-liquid interface

Clark, R. M., Berean, K. J., Carey, B. J., Pillai, N., Daeneke, T., Cole, I. S., Latham, K. and Kalantar-Zadeh, K. (2017). Patterned films from exfoliated two-dimensional transition metal dichalcogenides assembled at a liquid-liquid interface. Journal of Materials Chemistry C, 5 (28), 6937-6944. doi: 10.1039/c7tc01883e

Patterned films from exfoliated two-dimensional transition metal dichalcogenides assembled at a liquid-liquid interface

Funding

Current funding

  • 2025 - 2028
    A quantum exoGarment for unrivalled measurement of muscle function in sport
    Quantum 2032 Challenge Program
    Open grant
  • 2024 - 2027
    Quantum Concussion Diagnostics
    Quantum 2032 Challenge Program
    Open grant

Supervision

Availability

Dr Benjamin Carey is:
Available for supervision

Before you email them, read our advice on how to contact a supervisor.

Available projects

  • Quantum Magnetic Field Sensors and Signal Processing for Biomagnetic Monitoring

    Magnetoencepholography (MEG) is the best tool available for understanding the human brain. However, Current sensor technologies limit their use to dedicated,expensive customized facilities, thus precluding their use for many applications.

    The candidate will work as part of a team on developing quantum technologies and signal processing algorithms for the purposes of biomagnetic monitoring and in particular their potential for concussion diagnostics.

    This project will have two primary goals Development of next-generation quantum sensors – You will work on designing and fabricating highly sensitive, compact magnetometers capable of detecting weak biomagnetic signals. This will involve integrated photonics, quantum-enhanced measurement techniques, and precision optical readout methods. Advanced signal processing for biomagnetic monitoring – You will develop and apply novel algorithms to extract meaningful neurological signals from noisy, real-world measurements, improving the resolution and reliability of MEG data for clinical and research applications.

    You will have the opportunity to work on a wide variety of topics, from signal processing, simulation and finite element modelling, design, clean-room fabrication, device characterisation, to system integration and deployment.

    The student will be supported by the ARC Centre of Excellence for Quantum Biotechnology (QUBIC). They will be working with two groups within QUBIC. The Queensland Quantum Optics Lab at UQ and the Cognitive Neuroscience Laboratory at the University of Melbourne.

    The Queensland Quantum Optics Lab undertakes research in quantum physics and technology, exploiting micro- and nano-scale optical devices. Our mission is to test fundamental physics and develop applications in metrology, communication, and biomedical imaging. Much of our research is based on optical architectures integrated on silicon chips and is compatible with widely used fiber optical systems.

    The Cognitive Neuroscience Laboratory in Melbourne has built the only room temperature MEG system currently in Australia. This unique imaging capability is paired with computation modeling to investigate the fundamentals of human cognition.

    Our research fellows and PhD students work closely together. Our team members come from many technical and personal backgrounds, allowing for plenty of cross-pollination of ideas.

    We are affiliated with the Australian Research Council Centre of Excellence for Engineered Quantum Systems (EQUS) and the Australian Research Council Centre of Excellence for Quantum Biotechnology (QUBIC).

    The project will involve collaboration with a diverse team of researchers including close collaboration with the Queensland brain institute (QBI), providing an excellent opportunity to develop expertise in multidisciplinary research.

Supervision history

Current supervision

  • Doctor Philosophy

    Low frequency magnetic field sensing using cavity optomechanical magnetometers

    Associate Advisor

    Other advisors: Professor Warwick Bowen

  • Doctor Philosophy

    Integrated optomechanical magnetometer for through-earth wireless communication.

    Associate Advisor

    Other advisors: Professor Warwick Bowen

  • Doctor Philosophy

    Low frequency magnetic field sensing using cavity optomechanical magnetometers

    Associate Advisor

    Other advisors: Professor Warwick Bowen

  • Doctor Philosophy

    Advanced Optomechanical Acoustic Sensing

    Associate Advisor

    Other advisors: Dr Nathaniel Bawden, Professor Warwick Bowen

  • Doctor Philosophy

    Quantum acoustodynamics for quantum technologies and fundamental science

    Associate Advisor

    Other advisors: Professor Warwick Bowen

Completed supervision

Media

Enquiries

For media enquiries about Dr Benjamin Carey's areas of expertise, story ideas and help finding experts, contact our Media team:

communications@uq.edu.au