14
collaborators
2014–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
14 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Existence of universal resource anduselessness of tooentangled states for quantum metrology | QIP 2026 | Rina Miyajima, Yuki Takeuchi |
| Universal and optimal multi-qubit unitary synthesis based on meet in the middle | QIP 2026 | ▸Soichiro Yamazaki |
| Duality of extremal quantum states in verification and data hiding | QIP 2026 | Yuki Takeuchi |
| Ancilla-free single-qubit unitary synthesis: T-optimal synthesis algorithm and provable gate count bounds | QIP 2026 | ▸Hayata Morisaki, Kaoru Sano |
| Computing entanglement costs of non-local operations on the basis of algebraic geometry | QIP 2026 | Jisho Miyazaki, Hiroyuki Osaka |
| Imaginarity-assisted transformation from computationally universal to strictly universal quantum computation | TQC 2026 | Yasuaki Nakayama, Yuki Takeuchi |
There exist two types of universality in quantum computation: strict and computational universalities. The former is known to be stronger than the latter. In this presentation, we give a method of transforming from the computational universality with an elementary gate set {H,CCZ} to the strict universality by using a maximally imaginary state |+i>, which is an eigenstate of the Pauli-Y operator. From the viewpoint of resource theory, it would be intriguing whether the maximum imaginarity is necessary for the universality transformation. We show that |+i> is a unique resource state up to free operations. More precisely, we obtain the stronger conclusion that if a given resource state cannot be used for the universality transformation, then the realizable quantum gates are restricted to only orthogonal operators. This implies that by rotating a single-qubit state from the eigenstate |+> of the Pauli-X operator to |+i>, we can observe a kind of phase transition. The first half of our results has been published in PRL 133, 050601 (2024). |
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| The symmetric subspace as a universal resource for quantum metrology | TQC 2026 | Rina Miyajima, Yuki Takeuchi |
Phase estimation serves as a unifying framework for precision measurements in physics. While protocols using Greenberger-Horne-Zeilinger (GHZ) states can achieve the Heisenberg limit, they require prior knowledge of the Hamiltonian to align the probe's sensitivity axis. This necessity for precise alignment imposes a burden on the state preparation stage, limiting practical applications where the field direction is unknown or fluctuating. In this work, we address this limitation by identifying the symmetric subspace as a source of universal metrological resources. We introduce the concept of universal resource states (URS), a class of probe states capable of achieving Heisenberg-limited precision for any linear collective Hamiltonian, independent of its orientation. Our contribution is the explicit analytical derivation of these states and proving that almost all symmetric states serve as URSs for all linear collective Hamiltonians simultaneously. This reveals the symmetric subspace as an inherent reservoir of universal metrological resources: a single, generic symmetric state suffices for high-precision metrology, enabling state preparation completely decoupled from the Hamiltonian's orientation. |
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| Random pure states are not useful in quantum metrology with many-body locally diagonalizable Hamiltonians | TQC 2025 | Rina Miyajima, Yuki Takeuchi |
| Numerical studies on quantum state verification with single-qubit measurements | TQC 2024 | Yuki Takeuchi, Akihiro Mizutani |
| Probabilistic state synthesis based on optimal convex approximation. | TQC 2023 | Go Kato, Seiichiro Tani |
| Perfect discrimination of non-orthogonal quantum states with posterior classical partial information | QIP 2019 | Go Kato, Naoki Marumo |
| Network coding for distributed quantum computation over the butterfly and cluster networks | QIP 2015 | Mio Murao |
| Globalness of separable maps characterized by classical correlations without globally causal structure | QIP 2015 | Masaki Owari, Go Kato, Mio Murao |
| Implementability of unitary operations over the butterfly, grail and cluster networks with free classical communication | QIP 2014 | Mio Murao |
Collaborators
| Co-author | Joint talks |
|---|---|
| Yuki Takeuchi | 6 |
| Go Kato | 3 |
| Mio Murao | 3 |
| Rina Miyajima | 3 |
| Akihiro Mizutani | 1 |
| Hayata Morisaki | 1 |
| Hiroyuki Osaka | 1 |
| Jisho Miyazaki | 1 |
| Kaoru Sano | 1 |
| Masaki Owari | 1 |
| Naoki Marumo | 1 |
| Seiichiro Tani | 1 |
| Soichiro Yamazaki | 1 |
| Yasuaki Nakayama | 1 |