Sort by
Refine Your Search
-
technologies that may one day surpass conventional silicon electronics. Much of this work sits within the Monash–Warwick Alliance Major Project I lead on atomically thin materials for low‑energy electronics — a
-
and quantum impurities. I was previously part of the Australian Centre of Excellence for Future Low-Energy Electronics Technologies (FLEET), where I led the theoretical effort on light-matter coupled
-
information that is encoded in the x-ray wavefield as it passes through the sample. My research aims to tap into the wavefield phase to reveal weakly-attenuating objects like the lungs that are almost invisible
-
, the project will explore how displacement has impacted the wellbeing, financial security, and social participation of affected populations. It will involve a comprehensive analysis of how these impacts
-
capability. Details of the relevant requirements are available at www.monash.edu/graduate-research/study/apply . A degree in Chemistry, Chemical Engineering, Materials Science Electrochemistry, Physics, or a
-
with leading researchers in glass science/engineering and diffraction physics/crystallography in Australia and around the world. "Local structure and symmetry in metallic glasses" (with Assoc Prof Scott
-
I supervise a wide range of PhD projects on experimental research into the electronic properties of novel quantum materials including topological insulators, graphene, and other atomically thin two-dimensional materials. I am interested in creating a low-power topological transistor, in which an...
-
the Universe, e.g., where did the carbon in your bodies come from? What type of star made it? Generally we study stars in their final phases of evolution, when they become ageing red giants which is when
-
devices, or want to see your ideas come alive in real experiments, we’d love to hear from you. Students from physics, engineering, materials science, and related backgrounds are all welcome. Below are our
-
imaging, based on absorption, provides good image contrast between high- and low-density materials, such as bones and soft tissue. However, it cannot distinguish subtle density differences between soft