activity
20162021
most citedQuantum diffusion map for nonlinear dimensionality reduction

14 citations · 21 across the 3 of their papers we have counts for

collaborators

6 papers

quant-ph2021★ 2 cited

Hybrid Quantum-Classical Algorithms for Loan Collection Optimization with Loan Loss Provisions

Jirawat Tangpanitanon, Jirawat Saiphet, Pantita Palittapongarnpim +6

Banks are required to set aside funds in their income statement, known as a loan loss provision (LLP), to account for potential loan defaults and expenses. By treating the LLP as a…

quant-ph2021★ 14 cited

Quantum diffusion map for nonlinear dimensionality reduction

Apimuk Sornsaeng, Ninnat Dangniam, Pantita Palittapongarnpim +1

Inspired by random walk on graphs, diffusion map (DM) is a class of unsupervised machine learning that offers automatic identification of low-dimensional data structure hidden in a…

quant-ph2020★ 5 cited

Attainability of the Holevo-Cramér-Rao bound for two-qubit 3D magnetometry

Jamie Friel, Pantita Palittapongarnpim, Francesco Albarelli +1

We study quantum-limited 3D magnetometry using two qubits. Two qubits form the smallest multi-qubit system for 3D magnetometry, the simultaneous estimation of three phases, as it i…

quant-ph2018

Robustness of Quantum-Enhanced Adaptive Phase Estimation

Pantita Palittapongarnpim, Barry C. Sanders

As all physical adaptive quantum-enhanced metrology schemes operate under noisy conditions with only partially understood noise characteristics, so a practical control policy must…

physics.atom-ph2018

Measuring fluorescence into a nanofiber by observing field quadrature noise

Shreyas Jalnapurkar, Paul Anderson, Eugene S. Moiseev +4

We perform balanced homodyne detection of the electromagnetic field in a single-mode tapered optical nanofiber surrounded by rubidium atoms in a magneto-optical trap. Resonant fluo…

cs.LG2016

Learning in Quantum Control: High-Dimensional Global Optimization for Noisy Quantum Dynamics

Pantita Palittapongarnpim, Peter Wittek, Ehsan Zahedinejad +2

Quantum control is valuable for various quantum technologies such as high-fidelity gates for universal quantum computing, adaptive quantum-enhanced metrology, and ultra-cold atom m…