Carr, L. D., DeMille, D., Krems, R. V. & Ye, J. Cold and ultracold molecules: science, technology and applications. New J. Phys. 11, 055049 (2009).
Bohn, J. L., Rey, A. M. & Ye, J. Cold molecules: progress in quantum engineering of chemistry and quantum matter. Science 357, 1002 (2017).
Baranov, M. A., Dalmonte, M., Pupillo, G. & Zoller, P. Condensed matter theory of dipolar quantum gases. Chem. Rev. 112, 5012 (2012).
Büchler, H. P. et al. Strongly correlated 2D quantum phases with cold polar molecules: controlling the shape of the interaction potential. Phys. Rev. Lett. 98, 060404 (2007).
Yi, S., Li, T. & Sun, C. P. Novel quantum phases of dipolar bose gases in optical lattices. Phys. Rev. Lett. 98, 260405 (2007).
Micheli, A., Brennen, G. & Zoller, P. A toolbox for lattice-spin models with polar molecules. Nat. Phys. 2, 341–347 (2006).
DeMille, D. Quantum computation with trapped polar molecules. Phys. Rev. Lett. 88, 067901 (2002).
Cornish, S. L., Tarbutt, M. R. & Hazzard, K. R. Quantum computation and quantum simulation with ultracold molecules. Nat. Phys. 20, 730 (2024).
DeMille, D., Doyle, J. M. & Sushkov, A. O. Probing the frontiers of particle physics with tabletop-scale experiments. Science 357, 990 (2017).
Hu, M.-G. et al. Direct observation of bimolecular reactions of ultracold KRb molecules. Science 366, 1111 (2019).
Karman, T., Tomza, M. & Pérez-Ríos, J. Ultracold chemistry as a testbed for few-body physics. Nat. Phys. 20, 722 (2024).
Langen, T., Valtolina, G., Wang, D. & Ye, J. Quantum state manipulation and cooling of ultracold molecules. Nat. Phys. 20, 702 (2024).
Ni, K.-K. et al. A high phase-space-density gas of polar molecules. Science 322, 231 (2008).
Mayle, M., Quéméner, G., Ruzic, B. P. & Bohn, J. L. Scattering of ultracold molecules in the highly resonant regime. Phys. Rev. A 87, 012709 (2013).
Christianen, A., Zwierlein, M. W., Groenenboom, G. C. & Karman, T. Photoinduced two-body loss of ultracold molecules. Phys. Rev. Lett. 123, 123402 (2019).
Quéméner, G. & Bohn, J. L. Dynamics of ultracold molecules in confined geometry and electric field. Phys. Rev. A 83, 012705 (2011).
Avdeenkov, A. V., Kajita, M. & Bohn, J. L. Suppression of inelastic collisions of polar 1Σ state molecules in an electrostatic field. Phys. Rev. A 73, 022707 (2006).
Matsuda, K. et al. Resonant collisional shielding of reactive molecules using electric fields. Science 370, 1324 (2020).
Karman, T. & Hutson, J. M. Microwave shielding of ultracold polar molecules. Phys. Rev. Lett. 121, 163401 (2018).
Lassablière, L. & Quéméner, G. Controlling the scattering length of ultracold dipolar molecules. Phys. Rev. Lett. 121, 163402 (2018).
Anderegg, L. et al. Observation of microwave shielding of ultracold molecules. Science 373, 779 (2021).
Li, J.-R. et al. Tuning of dipolar interactions and evaporative cooling in a three-dimensional molecular quantum gas. Nat. Phys. 17, 1144–1148 (2021).
Schindewolf, A. et al. Evaporation of microwave-shielded polar molecules to quantum degeneracy. Nature 607, 677 (2022).
Valtolina, G. et al. Dipolar evaporation of reactive molecules to below the Fermi temperature. Nature 588, 239 (2020).
Bigagli, N. et al. Collisionally stable gas of bosonic dipolar ground-state molecules. Nat. Phys. 19, 1579 (2023).
Lin, J. et al. Microwave shielding of bosonicNaRb molecules. Phys. Rev. X 13, 031032 (2023).
Chen, X.-Y. et al. Field-linked resonances of polar molecules. Nature 614, 59–63 (2023).
Stevenson, I. et al. Three-body recombination of ultracold microwave-shielded polar molecules. Phys. Rev. Lett. 133, 263402 (2024).
Gorshkov, A. V. et al. Suppression of inelastic collisions between polar molecules with a repulsive shield. Phys. Rev. Lett. 101, 073201 (2008).
Karman, T. et al. Double microwave shielding. PRX Quantum 6, 020358 (2025).
Bigagli, N. et al. Observation ofBose-Einstein condensation of dipolar molecules. Nature 631, 289–293 (2024).
Guo, M. et al. Creation of an ultracold gas of ground-state dipolar 23Na87Rb molecules. Phys. Rev. Lett. 116, 205303 (2016).
Dutta, J., Mukherjee, B. & Hutson, J. M. Universality in the microwave shielding of ultracold polar molecules. Phys. Rev. Res. 7, 023164 (2025).
Zhang, S. et al. Dressed-state spectroscopy and magic trapping of microwave-shieldedNaCs molecules. Phys. Rev. Lett. 133, 263401 (2024).
Jia, F., Guo, Z., Li, L. & Wang, D. Detection of NaRb Feshbach molecules by photodissociation. Phys. Rev. A 102, 043327 (2020).
Ye, X., Guo, M., González-Martínez, M. L., Quéméner, G. & Wang, D. Collisions of ultracold 23Na87Rb molecules with controlled chemical reactivities. Sci. Adv. 4, eaaq0083 (2018).
Guo, M. et al. Dipolar collisions of ultracold ground-state bosonic molecules. Phys. Rev. X 8, 041044 (2018).
Jin, W.-J., Deng, F., Yi, S. & Shi, T. Bose–Einstein condensates of microwave-shielded polar molecules. Phys. Rev. Lett. 134, 233003 (2025).
Langen, T. et al. Dipolar droplets of strongly interacting molecules. Phys. Rev. Lett. 134, 053001 (2025).
Shi, T., Wang, H. & Cui, X. Universal bound states with Bose–Fermi duality in microwave-shielded ultracold molecules. Phys. Rev. Lett. 136, 043402 (2026).
Zhang, W. et al. Supersolid phases in ultracold gases of microwave shielded polar molecules. Preprint at https://arxiv.org/abs/2506.23820 (2025).
Zhang, S. et al. Observation of self-bound droplets of ultracold dipolar molecules. Nature 651, 601–606 (2026).
Chuang, A. Y. et al. Observation of a halo trimer in an ultracold Bose–Fermi mixture. Phys. Rev. X 15, 021098 (2025).
Deng, F., Hu, X., Jin, W.-J., Yi, S. & Shi, T. Two- and many-body physics of ultracold molecules dressed by dual microwave fields. Nat. Comm. 16, 11219 (2025).
Ciardi, M., Pedersen, K., Langen, T. & Pohl, T. Self-bound superfluid membranes and monolayer crystals of ultracold polar molecules. Phys. Rev. Lett. 135, 153401 (2025).
Zhang, W., Chen, K., Yi, S. & Shi, T. Quantum phases for finite-temperature gases of bosonic polar molecules shielded by dual microwaves. PRX Quantum 6, 040307 (2025).
Wang, D. Bose–Einstein condensate of ultracold sodium–rubidium molecules with tunable dipolar interactions. CUHK Research Data Repository https://doi.org/10.48668/GEGJ0V (2026).