Samberg Conference Center, 6th floor.
| Poster ID | Title | First Author |
| 1 | Investigating the nuclear structure of 173Yb | Jian Jiang |
| 2 | Sympathetic cooling of 16O2+ with co-trapped 40Ca+ for a two-photon optical clock | Dangka Shylla |
| 3 | Ion-Photon Entanglement Generation Schemes Utilizing Integrated Photonics Light Delivery | John Hannegan |
| 6 | A Universal Gate Set for Single-Ion Logical Qubits | Kyle DeBry |
| 7 | Structural Transitions, Isomerization, and Melting in 2D Ion Crystals | Boris Pashinskii |
| 9 | Fidelity bounds for spin-dependent kicks with pulsed lasers | Carlos Sagaseta |
| 10 | Enabling Novel Quantum Computing Research with QSCOUT’s Low Level Hardware Access | Edward C. Tortorici |
| 13 | Progress Toward Microwave- and RF-Based Mixed-Species Quantum Logic in Trapped Ions | Deviprasath Palani |
| 14 | Heavily Biased Qubit Encoded in a Trapped Atomic Ion | Jameson O’Reilly |
| 16 | Generation and Error Correction of a GKP Bell State | Moritz Fontboté-Schmidt |
| 17 | Coherence Time Improvements for Error Correction and Logical Entangling Gates with 40C+ Single-Ion Logical Qubits | Alexandra Plocki |
| 18 | Quantum logic spectroscopy of the hydrogen molecular ion | Niklas Zischka |
| 20 | Toward Sub‑10^(-18) 171Yb+ Optical Clocks and Cross‑Validation of Polarizability Measurements | Martin Steinel |
| 21 | Towards a trapped ion quantum repeater using a surface-trap-integrated microcavity | Katie David |
| 25 | A Next-Generation Trapped-Ion Platform for Universal Quantum Simulation with Global Drives | Thomas W. Burkle |
| 28 | Toward a Nuclear Schiff Moment Measurement using 229ThF+ Molecular Ions | Xing Fan |
| 30 | Cryogenic apparatus for quantum simulation with 2D ion crystals | Charles Willian Basso |
| 31 | Coherent control, state preparation and readout of polyatomic molecular ions via quantum logic spectroscopy | Mariano Isaza-Monsalve |
| 32 | Distillation of Single-Photon-Mediated Entanglement Across a Trapped-Ion Quantum Network | Adam Martinez |
| 33 | Scalable Quantum Computing using a 2D Array of Trapped Ions in a Surface Penning Trap | Jeremy Flannery |
| 34 | Black-Box Calibration of the Optimal Molmer-Sorensen Hamiltonian through Bayesian Optimization | Caleb Walton |
| 35 | Architectural Features of the IonQ Tempo Quantum Computer | Kenneth Wright |
| 37 | Modeling and Experimental Validation of Trap Potentials in Multi-Zone Surface Ion Traps | Benjamin Kraus |
| 38 | A compact cavity-integrated quantum network node and its use to achieve ion-ion entanglement over a 50 km-long fiber channel | Simon Baier |
| 40 | Non-Abelian String Breaking Dynamics on a Qudit Quantum Computer | Manuel John |
| 44 | Remote Entanglement using Isotope-Based Sympathetic Cooling in Surface-Traps | Seungwoo Yu |
| 45 | High-Cooperativity Ion–Photon Interfaces at 493 nm with Trapped Barium Ions in a Fibre Cavity | Tabijah Wasawo |
| 48 | Laser-Driven Universal Control of Zeeman Qudits for Quantum Information Processing | Hon-Kwan Chan |
| 49 | Isotope Shift Spectroscopy for Nuclear Structure and BSM Physics | Alex Brinson |
| 50 | In-Situ Rewiring of Two-Dimensional Ion Lattice Interactions Using Metastable State Shelving | Ilyoung Jung |
| 51 | High-performance Al+ Clocks: Stability, Accuracy, and Uptime | Addison Hartman |
| 52 | Integrated Photonics for Polarization-Gradient Cooling of Trapped Ions | Sabrina M. Corsetti |
| 53 | Laser-Free Control of Trapped Ion Qudits | Xiaoyang Shi |
| 54 | Sub-hertz optical transitions in excited Yb+ and their applications | Hassan Farhat |
| 55 | Phase-Space Winding and Topological Defect State in a Single-Ion Synthetic Dimension | Kyungmin Lee |
| 56 | Remote Entanglement of Trapped Ions Using Integrated Photonics for Collection and Interference | Sam J. Bishop |
| 58 | Towards Cavity-Enhanced Efficient Single Photon Generation from an Ion in a Linear Trap | Zhenghan Yuan |
| 59 | Remotely entangling trapped ions using trap-integrated optics for photon collection and interference | Felix W Knollmann |
| 62 | Development of Microcavities for Efficient Quantum Networks | Mika Zalewski |
| 63 | Sequential Measurements as a Resource for Quantum Metrology | Koray Mentesoglu |
| 64 | High Fidelity Trapped Ion Gates Using a Photonic Integrated Laser System | Christopher Caron |
| 65 | Spins and Ladders: Building Qubit-Boson Computing in the QSCOUT Trapped-Ion Testbed | Christopher G. Yale |
| 70 | Non-destructive parity measurement of a motional cat state | Ingrid Zimmermann |
| 71 | Scalable Ion Trap Chip Fabrication at Seoul National University | Seungwoo Yu |
| 72 | Entangling ions with engineered light gradients | Tommaso Faorlin |
| 75 | Cat state recoil spectroscopy of a vibrational transition in a single trapped CaOH+ molecular ion | Brandon Furey |
| 77 | Coupling of laser light to atomic multipole moments | Wesley C. Campbell |
| 79 | Phase and Amplitude Controlled Beam Arrays for Trapped-Ion simulation and Progress Towards Quantum Simulation of Singlet Fission | Midhuna Duraisamy Suganthi |
| 80 | Trapped ion compatibility with dielectrics for microcavity-based quantum networking | Lindsay Sonderhouse |
| 81 | Observation of Cooperative Light Scattering in Trapped-Ion Crystals | A. Kovalenko |
| Poster ID | Title | First Author |
| 83 | SDQC: Distributed Quantum Computing Architecture Utilizing Entangled Ion Qubit Shuttling | Seunghyun Baek |
| 85 | Distributed Quantum Computing between Two Ion-Trap Nodes in a Quantum Network | Gabriel Araneda |
| 86 | Exploring the use of optical forces to enhance cooling sequences on chains of ions | Ritika Anandwade |
| 89 | Noninvasive mid-circuit measurement and reset on atomic qubits | Jerry Chen |
| 91 | Quantum communication demonstrations with trapped-ion quantum memories, single and entangled photons, and a 14-km telecom fiber link | Juergen Eschner |
| 92 | Exact Implementation of Two-Axis Counter-Twisting in a Single High-Dimensional Spin | Evan Ritchie |
| 93 | Quantum Computational Approaches Towards Vibrational Spectra of Molecules | Phil Richerme |
| 95 | Probing Electroweak Nuclear Properties with Single Molecular Ions in a Penning Trap | Grant Mondeel |
| 97 | Structural Transitions in 2D Coulomb Crystals with Running-Wave Cavity Integration | Naoto Mizukami |
| 302 | Optical Tweezer-Controlled Entanglement Gates with Trapped-Ion Qubits | Oz Matoki |
| 102 | Investigating Visible Light Photorefraction in Thin-Film Lithium Niobate Waveguides | Thomas J. Kessler |
| 103 | Light-shift gates on 40Ca+ ground-state qubits in ion traps with integrated optics | Aditya Milind Kolhatkar |
| 104 | Fast Scrambling in a Hyperbolic Ising Model Using a Trapped-Ion Quantum Simulator | Keqin Yan |
| 105 | Scalable Control and Mode Engineering in a Surface-Electrode Trapped-Ion Quantum System | Daun Chung |
| 108 | Observation of quantum-field-theory dynamics on a spin-phonon quantum computer | Anton Than |
| 110 | Coherent control of a 171Yb+ qubit using CW Raman lasers with an optical phase-locked loop | Taehee Kim |
| 111 | Modular Architecture for Quantum Computing with Barium Ions | Ian Wildemann |
| 112 | Cooling and controlling negative molecular ions | Roland Wester |
| 119 | Motional Coherence of Trapped Ions Near Transparent Conducting Films | Simon Gorbaty |
| 124 | Out-Of-Lamb-Dicke Error Mitigation for Trapped Ion Qudit Entanglement via Pulse Shaping | Agustin Valdes Martinez |
| 141 | Microfabricated Surface-Electrode Ion Traps for Topological Vibrational Dynamics and Precision Sensing | Tobias Spanke |
| 146 | Arbitrary parallel entangling MS gates with independent calibration and stabilization | Matthew Diaz |
| 150 | Trapped Ion Qubit Gates Directly Driven by a Photonic Laser System | Robert Niffenegger |
| 151 | Single-Electron Detection with a SQUID: Toward Quantum-Limited, Relativistic Detection | Benedict Sukra |
| 157 | Quantum Gate Dynamics Beyond the Rotating-Wave Approximation using Multi-Timescale Quantum Averaging Theory | Kristian Barajas |
| 158 | Universal sorting in 2D ion trap arrays | Curtis Volin |
| 159 | Trapped-Ion Quantum Simulator with Site-Resolved Coherent and Dissipative Control | Abhishek Menon |
| 160 | Towards Measurements of the Weak Nuclear Force with Molecular Ions in a Penning trap | Haruka Kakioka |
| 165 | 300-mm foundry process for ion traps with integrated photonics – development and characterization | Vighnesh Natarajan |
| 170 | Software based compensation of AC-line perturbations and quantum logic operations on a Barium137 quDit | Gaurav Ashish Tathed |
| 171 | Portable Trapped-Ion System with Integrated Photonics and Modular Optical Subsystems | Zhenyu Wei |
| 176 | Universal Trapped Ion Qudit Quantum Computing | Peter Tirler |
| 177 | Nuclear charge radii and higher-order deformation in the rare-earth region from highly charged ion spectroscopy | Chowdhury Abrar Faiyaz |
| 178 | Towards Quantum Simulation with Trapped Molecular Ions | Julie Hernandez |
| 179 | Trapped Radioactive Molecules at the Texas A&M Cyclotron Institute | Prof. Dr. Jonas Karthein |
| 189 | Quantum Frequency Conversion for Entangling Nodes in a Trapped Ion Network | Camen Royse |
| 191 | Exploring Microwave Gates with Sandia National Lab’s Microwave Junction Trap | Evan Johnson |
| 214 | Ion trap fabrication capabilities and multi-project wafers at Sandia | J. D. Sterk |
| 216 | Dual-branch frequency comb vibrational spectroscopy of a single molecular ion | Joaquin Berrocal Sanchez |
| 221 | Odd-even staggering of nuclear charge radii along isotonic chains from highly charged ion spectroscopy | Hunter Staiger |
| 223 | A Large-Scale Programmable Trapped-Ion Quantum Simulator | Fabien Lefebvre |
| 226 | Sympathetic Ground State Cooling of CaH+ Ions | Malavika Balamurugan |
| 229 | Design and implementation of a modular laser system for AMO experiments | Daisy R.H. Smith |
| 230 | Progress on continuous loading and readout of the JILA Generation III eEDM experiment | Anzhou Wang |
| 236 | Trapped-ion two-qubit gates with >99.99% fidelity without ground-state cooling | David T C Allcock |
| 238 | Optimal Displacement Sensing with Spin-Dependent Squeezed States | Arghavan Safavi |
| 242 | A native polyqubit gate mediated by multi-tone drive | William Cutler |
| 274 | Barium Ion Trapping and Control in a Surface Trap Platform | Akimasa Ihara |
| 297 | Long Working-Distance Ion-Photon Interface with Custom-Designed High-NA objective lens | Jungwoo Choi |
| 300 | Towards Telecom Based Ion-Photon Entanglement of 138 Ba+ | Michael Kwan |
| 301 | Suppressing Intrinsic Spin-Phonon Errors in Trapped-Ion Quantum Simulation | Dylan Sheils |
- Vertical posters required
- A0 (wide: 84.1cm x high: 118.9 cm) OR Portrait (wide: 36″ x high: 48″)
Poster sessions are at the Samberg Conference Center
Poster printing
FedEx Office Print & Ship Center
600 Technology Square Ste 110
Cambridge, MA 02139
