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OpenReview

MIT Operations Research Center

Cambridge, MA

Yubin Kim

SM/PhD student at the MIT Operations Research Center (ORC)

I’m advised by Prof. Giannis Daras.

I’m exploring agentic AI: how agents plan, act, and learn over long horizons, and how to make long-horizon agentic systems more efficient.

Before MIT, I studied at Georgia Tech, where I worked on time series analysis and sequence modeling, advised by Prof. Shihao Yang and mentored by Jiecheng Lu. I’ve worked on attention mechanisms and positional encodings for Transformers, including efficient linear attention (ZeroS, NeurIPS 2025 Spotlight) and time-warp–adaptive positional embeddings for forecasting (StretchTime, ICML 2026).

I’m always happy to chat about research, collaborations, or opportunities. Reach me at yubinkim@mit.edu.

news

Sep 01, 2026 Started my SM/PhD at the MIT Operations Research Center, working with Giannis Daras.
May 01, 2026 StretchTime, my first-author paper on symplectic positional embeddings for time series forecasting, was accepted to ICML 2026.
Sep 18, 2025 ZeroS: Zero-Sum Linear Attention for Efficient Transformers was accepted to NeurIPS 2025 as a Spotlight.

selected publications

  1. StretchTime: Adaptive Time Series Forecasting via Symplectic Attention
    Yubin Kim, Viresh Pati, Jevon Twitty, Vinh Pham, Shihao Yang, and Jiecheng Lu
    In International Conference on Machine Learning (ICML), 2026
  2. Beyond Similarity: Temporal Operator Attention for Time Series Analysis
    Jevon Twitty, Vinh Pham, Nitiwith Rotchanarak, Viresh Pati, Yubin Kim, Shihao Yang, and Jiecheng Lu
    arXiv preprint arXiv:2605.11287, 2026
  3. CAPS: Unifying Attention, Recurrence, and Alignment in Transformer-based Time Series Forecasting
    Viresh Pati, Yubin Kim, Vinh Pham, Jevon Twitty, Shihao Yang, and Jiecheng Lu
    arXiv preprint arXiv:2602.02729, 2026
  4. ZeroS: Zero-Sum Linear Attention for Efficient Transformers
    Jiecheng Lu, Xu Han, Yan Sun, Viresh Pati, Yubin Kim, Siddhartha Somani, and Shihao Yang
    In Advances in Neural Information Processing Systems (NeurIPS), 2025