Individual-Ion Addressing and Readout in a Penning Trap (2404.02105v1)
Abstract: We implement individual addressing and readout of ions in a rigidly rotating planar crystal in a compact, permanent magnet Penning trap. The crystal of ${40}$Ca$+$ is trapped and stabilized without defects via a rotating triangular potential. The trapped ion fluorescence is detected in the rotating frame for parallel readout. The qubit is encoded in the metastable D$_{5/2}$ manifold enabling the use of high-power near-infrared laser systems for qubit operations. Addressed $\sigma_z$ operations are realized with a focused AC Stark shifting laser beam. We demonstrate addressing of ions near the center of the crystal and at large radii. Simulations show that the current addressing operation fidelity is limited to $\sim 97\%$ by the ion's thermal extent for the in-plane modes near the Doppler limit, but this could be improved to infidelities $<10{-3}$ with sub-Doppler cooling. The techniques demonstrated in this paper complete the set of operations for quantum simulation with the platform.
- R. Blatt and C. F. Roos, Nature Phys 8, 277 (2012).
- C.-C. J. Wang, A. C. Keith, and J. K. Freericks, Phys. Rev. A 87, 013422 (2013).
- T. Hasegawa, M. Jensen, and J. Bollinger, Phys. Rev. A 71, 023406 (2005).
- D. H. E. Dubin, Phys. Rev. A 88, 013403 (2013).
- A. Khan, B. Yoshimura, and J. K. Freericks, Phys. Rev. A (2015).
- Tpx3Cam from Amsterdam Scientific Instruments with a photon intensifier from Photonis.
- This can be improved by deshelving the population directly using a 729729729729 nm laser resonant with S1/212{}_{1/2}start_FLOATSUBSCRIPT 1 / 2 end_FLOATSUBSCRIPT to D5/252{}_{5/2}start_FLOATSUBSCRIPT 5 / 2 end_FLOATSUBSCRIPT electric quadrupole transition.
- A. M. Polloreno, A. M. Rey, and J. J. Bollinger, Phys. Rev. Res. 4, 033076 (2022).
- For this intensity and detuning, off-resonant photon scatter predominantly causes qubit leakage to the S-manifold at ∼80s−1similar-toabsent80superscript𝑠1\sim 80\ s^{-1}∼ 80 italic_s start_POSTSUPERSCRIPT - 1 end_POSTSUPERSCRIPT during each 5μ5𝜇5\ \mu5 italic_μs addressing transit.
- D. H. E. Dubin, Physics of Plasmas 27, 102107 (2020).
- The detection and cooling beam waists were limited due to the available laser power. We estimate >100absent100>100> 100 are present in both crystals.
- G. Morigi, Phys. Rev. A 67, 033402 (2003).
- E. Farhi, J. Goldstone, and S. Gutmann, A Quantum Approximate Optimization Algorithm (2014), arxiv:1411.4028 .