EquipmentClosed Cycle Cryostat - Montana Instruments

Ernest Rutherford Building Room ER365B
University of Canterbury
School of Physical and Chemical Sciences
Christchurch
New Zealand

PEOPLE

  • Manager
    • Senior Lecturer
    • School of Physical & Chemical Sciences
    • Senior LecturerSchool of Physical & Chemical Sciences
    My research focuses on functional oxides including ferroelectrics, multiferroics, and (anti-)ferromagnets. These materials show great promise in next generation low energy devices for computing and spintronics. We grow very thin (10-200 nm) layers of these materials on single crystal substrates by pulsed laser deposition (PLD) and work out how the substrate-imposed mechanical boundary conditions modify the physics, and ultimately, the functional response. Imagine a material that changes from magnetic to non-magnetic, or conductive to insulating, depending on the way we fabricate it or applied external stimulus (including strain, illumination with light, etc.). The aim is to use these functionalities in future electronics- to reduce energy consumption, and make faster, smaller devices.
    My research focuses on functional oxides including ferroelectrics, multiferroics, and (anti-)ferromagnets. These materials show great promise in next generation low energy devices for computing and spintronics. We grow very thin (10-200 nm) layers of these materials on single crystal substrates by pulsed laser deposition (PLD) and work out how the substrate-imposed mechanical boundary conditions modify the physics, and ultimately, the functional response. Imagine a material that changes from magnetic to non-magnetic, or conductive to insulating, depending on the way we fabricate it or applied external stimulus (including strain, illumination with light, etc.). The aim is to use these functionalities in future electronics- to reduce energy consumption, and make faster, smaller devices.
    • Faculty of Science
    • Registered to supervise Master's/Doctoral students