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Celebrating Women in Science Day on AZoM - Vimarsana News

Celebrating Women in Science Day on AZoM

The 2023 International Day of Women and Girls in Science is a widely celebrated UN World Day spotlighting the drive for gender equity in science. As a global, open-access scientific platform, AZoM is celebrating this world day with a series of features speaking with women who are excelling in their field of materials science and engineering.

Source: azom.com
Women in STEM: In Conversation with Dr. Giulia Galli - Vimarsana News

Women in STEM: In Conversation with Dr. Giulia Galli

In this interview, AZoM had the pleasure of speaking with Dr. Giulia Galli, a professor at the Univeristy of Chicago and senior scientist at the Argonne National Laboratory, about her impressive career in science.

Source: azom.com
Argonne scientists use quantum computers to simulate quantum materials - Vimarsana News

Argonne scientists use quantum computers to simulate quantum materials

Promising spin qubits for quantum technologies, such as defects in silicon carbide, are simulated on a quantum computer, revealing and mitigating the effect of hardware noise.

"Epitaxial growth of bilayer Bi(110) on two-dimensional ferromagnetic F" by Yilian Xi, Mengting Zhao et al. - Vimarsana News

"Epitaxial growth of bilayer Bi(110) on two-dimensional ferromagnetic F" by Yilian Xi, Mengting Zhao et al.

Heterostructures of two-dimensional (2D) layered materials with selective compositions play an important role in creating novel functionalities. Effective interface coupling between 2D ferromagnet and electronic materials would enable the generation of exotic physical phenomena caused by intrinsic symmetry breaking and proximity effect at interfaces. Here, epitaxial growth of bilayer Bi(110) on 2D ferromagnetic Fe3GeTe2 (FGT) with large magnetic anisotropy has been reported. Bilayer Bi(110) islands are found to extend along fixed lattice directions of FGT. The six preferred orientations could ...

Source: uow.edu.au
Realizing n-Type Conduction in Tin Monosulfide Thin Films - Vimarsana News

Realizing n-Type Conduction in Tin Monosulfide Thin Films

In a study published in Physical Review Materials, the combination of radiofrequency (RF) magnetron sputtering and an RF sulfur plasma source was used to fabricate n-type SnS thin films.

Source: azom.com