“I had the pleasure of working with Lisa for many years at Airbnb. Lisa is a versatile data science leader with full-stack DS knowledge across analytics to machine learning. She worked on numerous aspects of Airbnb: search, risk, and customer service. I was particularly impressed with her holistic thinking e.g. how to make search better while incorporating signals of fake listing and customer interaction with the hosts. She excelled both as a senior IC and manager. She built her team from the ground up and mentored the team for continued growth. Lisa's positive can-do attitude, strong technical and product leadership, and excellent network made her one of the best data science leaders at Airbnb. ”
Activity
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My experiment to see if I could survive in a Big Tech company marks a 5 year milestone today. Not bad. We can consider this to be an official long…
My experiment to see if I could survive in a Big Tech company marks a 5 year milestone today. Not bad. We can consider this to be an official long…
Liked by Lisa Qian
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Kathy and Geneviève have started hosting a series of fun, informal, in-person lunches this year -- imagine the lunch you'd have with dear old…
Kathy and Geneviève have started hosting a series of fun, informal, in-person lunches this year -- imagine the lunch you'd have with dear old…
Liked by Lisa Qian
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My team is working on proving a seamless guest experience by improving the check in flow by integrating with smart locks. We will also help Hosts…
My team is working on proving a seamless guest experience by improving the check in flow by integrating with smart locks. We will also help Hosts…
Liked by Lisa Qian
Experience
Education
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Stanford University
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Activities and Societies: Violinist with Stanford Symphony Orchestra and Stanford Philharmonia Orchestra.
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Publications
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Spin-Torque Ferromagnetic Resonance Measurements of Damping in Nanomagnets
Applied Physics Letters
The authors directly measure the magnetic damping parameterα in thin-film CoFeB and Permalloy (Py) nanomagnets at room temperature using a recently developed ferromagnetic resonance technique where the precessional mode of an individual nanomagnet can be excited by microwave-frequency spin-transfer torque and detected by the giant magnetoresistance effect. The authors obtainα CoFeB =0.014±0.003 andα Py =0.010±0.002 , values comparable to measurements for extended thin films, establishing…
The authors directly measure the magnetic damping parameterα in thin-film CoFeB and Permalloy (Py) nanomagnets at room temperature using a recently developed ferromagnetic resonance technique where the precessional mode of an individual nanomagnet can be excited by microwave-frequency spin-transfer torque and detected by the giant magnetoresistance effect. The authors obtainα CoFeB =0.014±0.003 andα Py =0.010±0.002 , values comparable to measurements for extended thin films, establishing that patterned nanomagnets can exhibit magnetic damping that is consistent with that of unpatterned bulk material.
Courses
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Design Thinking Bootcamp
ME 377
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Machine Learning
CS 229
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Mining Massive Datasets
CS246
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Programming Abstractions
CS 106B
Recommendations received
2 people have recommended Lisa
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When I left Airbnb, I was amazed to reflect on how much I had changed during my time there. That soaking in a strong culture day over day for years…
When I left Airbnb, I was amazed to reflect on how much I had changed during my time there. That soaking in a strong culture day over day for years…
Liked by Lisa Qian
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