1.IAMS / NTU Chemistry Joint Lecture
中研院原分所與臺大化學系聯合演講
| Title | Collisional-model-based quantum thermometry: a multiparameter approach |
| Speaker | Prof. Len, Yink Loong National Cheng Kung University 連英龍教授 國立成功大學物理系 |
| Time | 3:30 PM, October 8 (Thursday), 2026 |
| Venue | Dr. Poe Lecture Hall, IAMS 本所浦大邦紀念講堂(臺大校園內) |
| Contact | Dr. Sappy Jen |
| Abstract | Quantum thermometry is the science of estimating or measuring the temperature, using quantum systems. A common physical model of quantum thermometry is the collisional model, in which the temperature is estimated from quantum systems that interact with the thermal bath (which defines the temperature) in a relatively short timescale, and hence, out of thermal equilibrium with the bath. In this work, we study quantum thermometry from a multiparameter perspective, where in addition to the temperature parameter, the interaction strength in the collisional model is treated as an unknown as well. |
2.IAMS / NTU Chemistry Joint Lecture
中研院原分所與臺大化學系聯合演講
| Title | Simulating spin physics using quantum dot arrays |
| Speaker | Prof. Hsiao, Tzu-kan Department of Physics, National Tsing Hua University 蕭子綱教授 國立清華大學物理系 |
| Time | 3:30 PM, October 15 (Thursday), 2026 |
| Venue | Dr. Poe Lecture Hall, IAMS 本所浦大邦紀念講堂(臺大校園內) |
| Contact | Dr. Chun-Chia Chen |
3.IAMS Lecture
中研院原分所演講公告
| Title | Boron-Based Compounds: Potential and Emerging Applications in Medicine |
| Speaker | Prof. Evamarie Hey-Hawkins Leipzig University Evamarie Hey-Hawkins 教授 Leipzig University |
| Time | 11:00 AM, October 19 (Monday), 2026 |
| Venue | Dr. Poe Lecture Hall, IAMS 本所浦大邦紀念講堂(臺大校園內) |
| Contact | Dr. Ching-Wei Lin |
4.IAMS Lecture
中研院原分所演講公告
| Title | Extracting more information from spin-ARPES |
| Speaker | Prof. Kenta Kuroda Hiroshima University, 黒田健太教授 廣島大學 |
| Time | 10:30 AM, October 30 (Friday), 2026 |
| Venue | Rm 425, IAMS, IAMS Rm 425, IAMS |
| Contact | Dr. Cheng-Tien Chiang ctchiang@as.edu.tw |
| Abstract | Spin- and angle-resolved photoemission spectroscopy (spin-ARPES) is widely used to determine the spin polarization of electronic states. In this seminar, I will discuss two recent developments in spin-ARPES that go beyond conventional spin-polarization measurements. First, I will introduce a phase-resolved approach based on spin interference [1-3]. In spin-orbit-coupled systems, coherent superposition of different ptical transition channels can rotate the photoelectron spin. By measuring the full three-dimensional spin vector, the relative phase between these channels can be extracted, allowing spin-ARPES to be viewed as an nterferometric probe of the complex photoemission response.Second, I will present our recent development of spin-ARPES [4] combined with pump-probe technique at HiSOR, which combines femtosecond optical excitation with three-dimensional spin detection to investigate transient spin-polarized states and ultrafast spin dynamics.Together, these studies illustrate how spin-ARPES can provide information beyond conventional spin-polarization measurements. |