2
program roles
10
collaborators
2015–2024
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
3 Posters
| Title | Conference | Co-authors |
|---|---|---|
| High-count-rate single photon detection system using multi-pixel SSPD with SFQ circuit and FPGA TDC | QCRYPT 2024 | Toshimori Honjo, Shigeyuki Miyajima, Shigehito Miki, Hirotaka Terai, Hsin-Pin Lo, Takuya Ikuta, Yuya Yonezu |
We report a high-count-rate single photon detection system using a 16-pixel superconducting single photon detector (SSPD) with a single-flux-quantum (SFQ) multiplex circuit and custom FPGA-based time-to-digital converter (TDC). The system demonstrates continuous single photon counting at the rate of 300 M cps. |
||
| A simple low-latency real-time certifiable quantum random number generator | QCRYPT 2021 | Yanbao Zhang, Hsin-Pin Lo, Alan Mink, Takuya Ikuta, Toshimori Honjo, William J. Munro |
Quantum random numbers distinguish themselves from others by their intrinsic unpredictability arising from the principles of quantum mechanics. As such they are extremely useful in many scientific and real-world applications with considerable efforts going into their realizations. Most demonstrations focus on high asymptotic generation rates. For this goal, a large number of repeated trials are required to accumulate a significant store of certifiable randomness, resulting in a high latency between the initial request and the delivery of the requested random bits. Here we demonstrate low-latency real-time certifiable quantum randomness generation from measurements on photonic time-bin states. For this, we develop methods to efficiently certify randomness taking into account adversarial imperfections in both the state preparation and the measurement apparatus. Every 0.12 seconds we generate a block of 8192 random bits which are certified against all quantum adversaries with an error bounded by 2^{-64}. Our quantum random number generator is thus well suited for realizing a continuously operating, high-security, and high-speed quantum randomness beacon. |
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| Violation of the CGLMP inequality with entangled time-bin ququarts | QCRYPT 2015 | Takuya Ikuta |
Committee service
| Conference | Committee | Position | Title |
|---|---|---|---|
| QCRYPT 2017 | program | member | — |
| QCRYPT 2015 | program | member | — |
Collaborators
| Co-author | Joint talks |
|---|---|
| Takuya Ikuta | 3 |
| Hsin-Pin Lo | 2 |
| Toshimori Honjo | 2 |
| Alan Mink | 1 |
| Hirotaka Terai | 1 |
| Shigehito Miki | 1 |
| Shigeyuki Miyajima | 1 |
| William J. Munro | 1 |
| Yanbao Zhang | 1 |
| Yuya Yonezu | 1 |