23
collaborators
2017–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
5 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Fullqubit alchemist: Quantum algorithm for alchemical free energy calculations | QIP 2026 | ▸Po-Wei Huang, Gregory Boyd, Gian-Luca R. Anselmetti, Matthias Degroote, Nikolaj Moll, Raffaele Santagati, Michael Streif, Benjamin Ries, Hamza Jnane, Daniel Marti-Dafcik, Sophia Simon, Nathan Wiebe, Balint Koczor |
| Fullqubit alchemist: Quantum algorithm for alchemical free energy calculations | TQC 2026 | ▸Po-Wei Huang, Gregory Boyd, Gian-Luca R. Anselmetti, Matthias Degroote, Nikolaj Moll, Raffaele Santagati, Michael Streif, Benjamin Ries, Daniel Marti-Dafcik, Hamza Jnane, Sophia Simon, Nathan Wiebe, Balint Koczor |
Accurately computing the free energies of biological processes is a cornerstone of computer-aided drug design, but it is a daunting task. The need to sample vast conformational spaces and account for entropic contributions makes the estimation of binding free energies very expensive. While classical methods, such as thermodynamic integration and alchemical free energy calculations, have significantly contributed to reducing computational costs, they still face limitations in terms of efficiency and scalability. We tackle this through a quantum algorithm for the estimation of free energy differences by adapting the existing Liouvillian approach and introducing several key algorithmic improvements. We directly implement the Liouvillian operator and provide an efficient description of electronic forces acting on both nuclear and electronic particles on the quantum ground state potential energy surface. This leads to super-polynomial runtime scaling improvements in the precision of our Liouvillian simulation approach and quadratic improvements in the scaling with the number of particles relative to prior quantum algorithms. Second, our algorithm calculates free energy differences via a fully quantum implementation of thermodynamic integration and alchemy, thereby foregoing expensive entropy estimation subroutines used in prior works. Our results open new avenues towards the application of quantum computers in drug discovery. |
||
| Quasi-device-independent witnessing of genuine multilevel quantum coherence | QIP 2018 | Martin Ringbauer, Marco Cianciaruso, Sarah Lau, Gerardo Adesso, Andrew White, Alessandro Fedrizzi, Marco Piani |
| Practical quantum metrology in noisy environments | QIP 2017 | Rosanna Nichols, Luis A. Correa, Gerardo Adesso |
| Faithful conversion of multilevel nonclassicality into multipartite entanglement | TQC 2017 | Bartosz Regula, Marco Cianciaruso, Marco Piani, Gerardo Adesso |
Collaborators
| Co-author | Joint talks |
|---|---|
| Gerardo Adesso | 3 |
| Balint Koczor | 2 |
| Benjamin Ries | 2 |
| Daniel Marti-Dafcik | 2 |
| Gian-Luca R. Anselmetti | 2 |
| Gregory Boyd | 2 |
| Hamza Jnane | 2 |
| Marco Cianciaruso | 2 |
| Marco Piani | 2 |
| Matthias Degroote | 2 |
| Michael Streif | 2 |
| Nathan Wiebe | 2 |
| Nikolaj Moll | 2 |
| Po-Wei Huang | 2 |
| Raffaele Santagati | 2 |
| Sophia Simon | 2 |
| Alessandro Fedrizzi | 1 |
| Andrew White | 1 |
| Bartosz Regula | 1 |
| Luis A. Correa | 1 |