Graduate student education and postdoctoral training are at the core of our Center's focus on Quantum Sensing and Measurement. Whether in theory or experiment, fundamental science or more applied engineering, each student works with a groupÌýunder the guidance of a Senior Investigator on quantum sensing projects that are inherently exciting and professionally promising.ÌýWe encourage students and postdocs to broaden their circle of colleagues by developing and maintaining professional contactÌýwith peers in any of the multiple research groups that make up Q-SEnSE.ÌýAnd, for those who would like to work with those peers to help shape theÌýresearch and educationÌýexperience, we invite at least one student from each partner institution to join the Q-SEnSE Student Council.Ìý

Student-organized Activities

  • Summer Workshop, 2023
  • Q-SEnSE Student Council
  • Student-managed Slack channel
  • Get-together at national meetings (e.g. DAMOP)
  • Mini-proposals for short scientific visits to other Q-SEnSE labs

Participating Students and Postdocs (9/1/2022- 8/31/2023)

  • Brudney, Sean:ÌýGrad Student;ÌýTrapped ions for quantum information and computing. Interests also in quantum sensing and other applications in physics for ion traps;Ìýsbrudney@uoregon.eduÌý
  • Metzner, Jeremy:ÌýGrad Student;Ìýtrapped ion quantum systems
  • Quinn, Alexander: Grad Student;Ìýtrapped ion quantum systems

  • Mehling, Kendall: Grad Student

  • Name, Grad Student/Postdoc/Undergrad, Q-SEnSE Project Focus, email

  • Blocher, Philip: Postdoc
  • Buchemmavari, Vikas: Grad Student
  • Omanakuttan, Sivaprasad: Grad Student;ÌýQudits for quantum computing;Ìýsomanakuttan@unm.edu

  • Heyrich, Matthew: Grad Student;Ìýdual frequency comb electro-optic sampling of thermal and non-classical fields
  • Lind, Alexander: Postdoc;Ìýmid-infrared frequency comb spectroscopy and sensing at the quantum limit
  • McVey, Caden: Undergrad;Ìýoptical cavity frequency references for precision quantum metrology
  • Mundy, Aria: Undergrad;Ìýrobust and low-power fiber laser frequency combs
  • Tsao, Eugene: Grad Student;Ìýquantum limits of heterodyne and homodyne with optical frequency combs

  • Erikson, James: Grad Student;ÌýI study methods of inducing second order optical non-linearities in amorphous materials, with the goal of producing entangled particles in an optical chip;Ìýjames.erikson@colorado.edu

  • Nantel, Megan: Grad Student; Strontium, atom interferometry, Floquet theory, UHV, magnetic shielding; mnantel@stanford.edu
  • Jiang, Yijun, Grad Student; Optical lattices, strontium, magnetic shielding, degaussing, quantum optimization simulation, high power electronics, UHV; yijunj@stanford.edu
  • Swan, Hunter, Grad Student; Spatial light modulators, machine learning, Pockels cells, strontium dipole trap; orswan@stanford.edu

  • Wilson, John: Grad Student;ÌýI work on quantum state preparation via atom-cavity systems, with a focus on entanglement generation and manipulation for quantum metrology;ÌýJohn.Wilson-6@colorado.edu

  • Na Narong, Tina: Grad Student;ÌýYb magnetometer, focusing on the theory and numerical model of multi-level atomic spectroscopy;Ìýtn282@stanford.edu

  • Name, Grad Student/Postdoc/Undergrad, Q-SEnSE Project Focus, email

  • Name, Grad Student/Postdoc/Undergrad, Q-SEnSE Project Focus, email

  • Burd, Shauh: Postdoc
  • Panelli, Guglielmo: Grad Student;ÌýI work on the generation of highly-squeezed momentum states in Strontium and their utilization for quantum-enhanced atom interferometery;Ìýgpanelli@gmail.com

  • Eckner, William: Grad Student
  • Jenkins, Alec:ÌýPostdoc
  • Marinelli, Matteo:ÌýPostdoc
  • Mcgrew, William: Postdoc
  • Tan, TingYou: Grad Student
  • Young, Aaron: Grad Student

  • Aramburu, Pablo: Grad Student;ÌýI work on hybrid quantum systems coupling superconducting qubits to phononic cavities;Ìýpaar3409@colorado.edu
  • Davidson, Jacob: Grad Student
  • Ruddy, Elizabeth: Grad Student
  • Gurra, Eva: Grad Student
  • Zhao, Ziyi: Grad Student

  • David, Kaitlyn: Grad Student; Infrared lasers and optics, optical difference frequency generation, calcium ion trapping; kaitlyn.david@nist.gov

  • Name, Grad Student/Postdoc/Undergrad, Q-SEnSE Project Focus, email

  • Borish, Victoria: Postdoc;ÌýI study quantum educational labs: what learning gains undergraduate students can achieve from working with quantum experiments in lab courses and how to make those as effective as possible;Ìývictoria.borish@colorado.edu
  • Oliver, Kristin: Grad Student; rigorous assessment of experiential learning initiatives, particulary the Quantum Forge capstone course;Ìýkristin.oliver@colorado.eduÌý

  • Hassan, Youssef: Grad Student;ÌýI work on developing optical lattice atomic clocks, with emphasis on controlling one of its important limiting systematic effects: the blackbody Stark shift;Ìýyoussef.hassan@colorado.edu
  • Siegel, Jacob: Grad Student

  • Thurtell, Tyler: Grad Student;ÌýI work on the application of ideas and techniques from variational quantum algorithms and tensor networks to metrology;Ìýtthurtell@unm.eduÌý

  • Rege, Amit: Grad Student;ÌýI work on the application of machine learning techniques in the detection of crosstalk for quantum computing systems;Ìýamit.rege@colorado.edu

  • Name, Grad Student/Postdoc/Undergrad, Q-SEnSE Project Focus, email

  • Caldwell, Emily: Grad Student;ÌýI work on free-space time and frequency transfer using frequency comb lasers;Ìýemily.caldwell@colorado.edu

  • Name, Grad Student/Postdoc/Undergrad, Q-SEnSE Project Focus, email

  • Hsu, Ting-Wei: Grad Student;ÌýI work on cryogenic Rydberg atom tweezer array for high fidelity quantum computation and quantum simulation;Ìýtingwei.hsu@colorado.edu
  • Kiehl, Chris: Grad Student
  • Menon, Thanmay Sunil: Grad Student
  • Pampel, Steven: Grad Student;ÌýI study the atomic to behavior of rubidium atoms using optical tweezers, with a focus on quantum state preparation/tomography of single atoms and collisional dynamics related to loading tweezers;Ìýsteven.pampel@colorado.edu
  • Zhang, Zhenpu: Grad Student

  • Agarwal, Sanaa: Grad Student
  • Chu, Anjun: Grad Student;ÌýI work on the theory of quantum simulation and metrology in optical lattice clocks and cavity QED systems;Ìýanjun.chu@colorado.eduÌý
  • Khan, Muhammad:ÌýPostdoc
  • Mamaev, Mikhail: Grad Student;ÌýUltracold atomic physics in 3D optical lattice systems, entanglement generation, resonant dynamics;Ìýmikhail.mamaev@colorado.edu
  • Muleady, Sean: Grad Student
  • Zhang, Haoqing: Grad Student;ÌýI work on quantum simulation with cavity QED systems;Ìýhazh2686@colorado.eduÌý

  • Dudley, Tiamike: Undergrad (University of New Mexico, co-advised with Prof. Jim Plusquellic); field programmable gate arrays, system-on-chip design; tiadud@unm.edu
    Irtija, Nafis: Grad Student (University of New Mexico, co-advised with Prof. Eirini Tsiropoulou); field programmable gate arrays, system-on-chip design; nafis@unm.edu

  • Granmoe, Austin: Grad Student;ÌýI am currently working on manufacturing tapered optical fibers that allow for high efficiency coupling to nanophotonic devices;Ìýaustin.granmoe@colorado.edu
  • Hoang, Da Thi: Grad Student

  • Luo, Chengyi:ÌýGrad Student; atomic squeezing, matterwave interferometry, cavity-QED, rubidium; chengyi.luo@colorado.edu
  • Niu, Zhijing: Grad Student; superradiant laser, quantum-enhanced metrology, cavity-QED, ring cavity, strontium; zhijing.niu@colorado.edu
  • Song, Eric Yilun: Grad Student; many-body simulatin, quantum-enhanced metrology, cavity-QED, strontium; yilun.song@colorado.edu
  • Young, Dylan: Grad Student; many-body simulation, quantum-enhanced metrology, cavity-QED, strontium; dylan.young@colorado.edu

  • Li, Zeyang: Grad Student;ÌýI work on using the cavity QED method to generate entanglement on an ensemble of atoms with optical clock transition (Ytterbium) for an entanglement enhanced quantum metrology;Ìýzyli@mit.edu

  • Aeppli, Alexander: Grad Student
  • Dhruv, Kedar: Grad Student;ÌýBuilding narrow linewidth lasers referenced to cryogenic silicon cavities;Ìýdhruvkedar@gmail.com
  • Hutson, Ross: Grad Student
  • Miklos, Maya: Grad Student
  • Robinson, John: Postdoc
  • Yan, Lingfeng: Grad Student

  • Ostermann, Stefan: Postdoc
  • Peter, Jonah: Grad Student;ÌýI study collective effects within quantum emitters arrays with an emphasis on fundamental physics, sensing, and molecular based quantum technologies;Ìýjonahpeter@g.harvard.edu

  • Name, Grad Student/Postdoc/Undergrad, Q-SEnSE Project Focus, email