School of Humanities and Sciences
Showing 801-900 of 1,904 Results
-
Joy Kumagai
Ph.D. Student in Biology, admitted Autumn 2022
Other Tech - Graduate, BiologyBioJoy is interested in the ways conservation and disease affect the resilience of coastal foundational species. Her current focus includes studying how seagrasses and kelp forests respond to simultaneous pressures, including marine heatwaves and disease dynamics, and how marine protected areas may affect the resistance and recovery of these ecosystems. She is passionate about useful, transdisciplinary research that increases the wellbeing of people through the sustainable management of marine ecosystems. Using her skillset in GIS, her previous work focused on marine conservation of coastal ecosystems, spanning valuing carbon stocks within Mexico to developing metrics quantifying the extent of area-based conservation. Additionally, she worked for IPBES at the science-policy interface implementing data management within international assessments focused on biodiversity and ecosystem services. When not at her desk, she likes to be out in nature, hiking, swimming, or knitting.
-
Shayarneel Kundu
Ph.D. Student in Physics, admitted Autumn 2022
BioI am an incoming graduate student interested in Particle Physics Phenomenology, Dark Matter Physics, and Beyond Standard Model Physics.
-
Chao-Lin Kuo
Professor of Physics and of Particle Physics and Astrophysics
Current Research and Scholarly Interests1. Searching/measuring primordial gravitational waves in the CMB (Cosmic Microwave Background) through experiments at the South Pole (BICEP and SPT), high plateaus in Tibet (AliCPT) and Atacama (Simons Observatory), as well as in space (LiteBIRD).
2. Development and applications of superconducting detector and readout systems in astrophysics, cosmology, and other areas.
3. Novel detector concepts for axion searches (https://youtu.be/UBscQSFzpLE) -
Brian Lantz
Professor (Research) of Applied Physics
Current Research and Scholarly InterestsMeasure gravitational waves
-
Sofiane F. Larbi
Undergraduate, Mathematics
Biosofianelarbi.com
-
Robert Laughlin
Anne T. and Robert M. Bass Professor in the School of Humanities and Sciences
BioProfessor Laughlin is a theorist with interests ranging from hard-core engineering to cosmology. He is an expert in semiconductors (Nobel Prize 1998) and has also worked on plasma and nuclear physics issues related to fusion and nuclear-pumped X-ray lasers. His technical work at the moment focuses on “correlated-electron” phenomenology – working backward from experimental properties of materials to infer the presence (or not) of new kinds of quantum self-organization. He recently proposed that all Mott insulators – including the notorious doped ones that exhibit high-temperature superconductivity – are plagued by a new kind of subsidiary order called “orbital antiferromagnetism” that is difficult to detect directly. He is also the author of A Different Universe, a lay-accessible book explaining emergent law.
-
Benjamin Lev
Stanford Fortitude Professor
Current Research and Scholarly InterestsLevLab is a joint AMO & CM experimental group that explores the question: Can new classes of states and phases of quantum matter be created far away from equilibrium, and if so, what do we learn? We use our new technique, confocal cavity QED, to both engineer out-of-equilibrium quantum gases and 2D materials and to image and control their new properties.
-
Craig Levin
Professor of Radiology (Molecular Imaging Program at Stanford/Nuclear Medicine) and, by courtesy, of Physics, of Electrical Engineering and of Bioengineering
Current Research and Scholarly InterestsMolecular Imaging Instrumentation
Laboratory
Our research interests involve the development of novel instrumentation and software algorithms for in vivo imaging of cellular and molecular signatures of disease in humans and small laboratory animal subjects. -
Xia Li (Lisa)
Basic Life Research Scientist, Biology
Current Research and Scholarly InterestsMy current research focuses on how aging-associated loss of proteome homeostasis (proteostasis) and organelle dysfunction, particularly lysosomal impairment, drive selective neuronal vulnerability in Parkinson’s disease. I integrate mechanistic biochemistry with neuronal cell biology to define how protein aggregates disrupt lysosomal function and how proteostasis and lysosome contributes to neuronal dysfunction and disease pathology.
-
Warren Li
Postdoctoral Scholar, Mathematics
BioHello! I am a Stanford Science Fellow working in the Mathematics department. I am interested in the theory of nonlinear wave equations of mathematical physics, including the Einstein equations of General Relativity, the equations of gas mechanics, and related models. In particular, my research concerns a detailed understanding of "singularity formation" for such models, where energy is concentrated and interacts in such a way that the models, in some sense, break down. My focus is on understanding exactly how such a breakdown occurs and the physical implications.