Doctoral Student
CurrentDesigning a multi-channel OPM array for magnetic prospection.
Please complete the CAPTCHA to continue
A concise factual answer block for searchers comparing this professional profile.
Sambit Satapathy is listed as Doctoral student at Quantum systems, Leibniz IPHT, Jena at Leibniz Institute of Photonic Technology, a with 111 employees, based in Jena, Thuringia, Germany. AeroLeads shows a matched LinkedIn profile for Sambit Satapathy.
Sambit Satapathy previously worked as Doctoral Student at Leibniz Institute Of Photonic Technology and Reasearch Assistant at Leibniz Institute Of Photonic Technology. Sambit Satapathy holds Master'S Degree, Photonics from Friedrich Schiller University Jena.
This section adds company-level context without repeating Sambit Satapathy's masked contact details.
Review company-level records connected to Sambit Satapathy before choosing the right outreach path.
Sambit Satapathy is a Doctoral student at Quantum systems, Leibniz IPHT, Jena at Leibniz Institute of Photonic Technology.
Company context helps verify the profile and gives searchers a useful next step.
A career timeline built from the work history available for this profile.
Jena, Thuringia, Germany
Designing a multi-channel OPM array for magnetic prospection.
Jena, Thuringia, Germany
I worked on the design, fabrication, and characterization of a highly sensitive Free Spin Precession (FSP) type Optically Pumped Magnetometer (OPM) tailored for mobile applications. Collaborating with Leibniz-IPHT Quantum Systems group members, I utilized microfabricated Cesium cells alongside commercially available laser diodes and drivers, strategically chosen to optimize cost-effectiveness without compromising performance.Beyond hardware development, I devised and implemented… Show more I worked on the design, fabrication, and characterization of a highly sensitive Free Spin Precession (FSP) type Optically Pumped Magnetometer (OPM) tailored for mobile applications. Collaborating with Leibniz-IPHT Quantum Systems group members, I utilized microfabricated Cesium cells alongside commercially available laser diodes and drivers, strategically chosen to optimize cost-effectiveness without compromising performance.Beyond hardware development, I devised and implemented user-friendly data acquisition schemes, with ongoing efforts focused on enhancing real-time data visualization for improved usability. Additionally, I actively pursued strategies to streamline the setup for increased mobility, a crucial aspect for field applications.My thesis work was marked by meticulous attention to detail, enabling successful mitigation of various systematic and fundamental errors, ultimately leading to substantial sensitivity improvements.Presently, I am transitioning towards the development of a multi-channel OPM magnetometer, with a focus on applications in Geo-archeology and Geo-explorations. This trajectory represents my continued dedication to advancing magnetic field sensing technologies and their practical applications. Show less
Jena, Thuringia, Germany
I worked on the theoretical modelling of the Entangled photons generation by spontaneous parametric down conversation (SPDC). Developed biphoton spectral states for signal and idler photon generation via SPDC in the Hermite Gaussian basis, focusing on collinear setups. Examined various spectral-temporal pulse shapes common in experiments and computed coincidence amplitudes across suitable frequency ranges. Evaluated purity of reduced and full spectral biphoton states for different Hermite… Show more I worked on the theoretical modelling of the Entangled photons generation by spontaneous parametric down conversation (SPDC). Developed biphoton spectral states for signal and idler photon generation via SPDC in the Hermite Gaussian basis, focusing on collinear setups. Examined various spectral-temporal pulse shapes common in experiments and computed coincidence amplitudes across suitable frequency ranges. Evaluated purity of reduced and full spectral biphoton states for different Hermite Gaussian modes. Methodology enables tailored photon generation for specific pulse shapes, facilitating determination of purity and coincidence amplitudes, and allowing for engineering of pulse shapes for precise frequency matching. Show less
Puducherry, India
Using the Stokes parameters and Mueller matrix formalism for analysing biological specimen.
Other employees you can reach at leibniz-ipht.de. View company contacts for 111 employees →
Jianfeng Wang
Colleague at Leibniz Institute Of Photonic TechnologyUrbana, Illinois, United States
View →
FB
Francesco Bello
Colleague at Leibniz Institute Of Photonic TechnologyCambridge, England, United Kingdom
View →
TB
Thomas Bocklitz
Colleague at Leibniz Institute Of Photonic TechnologyJena, Thuringia, Germany
View →
TF
Timea Frosch (Bögözi)
Colleague at Leibniz Institute Of Photonic TechnologyJena, Thuringia, Germany
View →
NK
Niklas Klosterhalfen
Colleague at Leibniz Institute Of Photonic TechnologyJena, Thuringia, Germany
View →
AG
Andre Gomes
Colleague at Leibniz Institute Of Photonic TechnologyJena, Thuringia, Germany
View →
AA
Aarya Aarya
Colleague at Leibniz Institute Of Photonic TechnologyJena, Thuringia, Germany
View →
CD
Celia Diezel
Colleague at Leibniz Institute Of Photonic TechnologyHalle, Saxony-Anhalt, Germany
View →
WH
Wenqin Huang
Colleague at Leibniz Institute Of Photonic TechnologyJena, Thuringia, Germany
View →
YR
Yashar Rouzbahani
Colleague at Leibniz Institute Of Photonic TechnologyJena, Thuringia, Germany
View →
Quick answers generated from the profile data available on this page.
Sambit Satapathy works for Leibniz Institute of Photonic Technology.
Sambit Satapathy is listed as Doctoral student at Quantum systems, Leibniz IPHT, Jena at Leibniz Institute of Photonic Technology.
Sambit Satapathy is based in Jena, Thuringia, Germany while working with Leibniz Institute of Photonic Technology.
Sambit Satapathy has worked for Leibniz Institute Of Photonic Technology, Helmholz Institute Jena, and Pondicherry University.
Sambit Satapathy's colleagues at Leibniz Institute of Photonic Technology include Jianfeng Wang, Francesco Bello, Thomas Bocklitz, Timea Frosch (Bögözi), and Niklas Klosterhalfen.
You can use AeroLeads to view verified contact signals for Sambit Satapathy at Leibniz Institute of Photonic Technology, including work email, phone, and LinkedIn data when available.
Sambit Satapathy holds Master'S Degree, Photonics from Friedrich Schiller University Jena.
Search by job title, company, industry, location, and seniority. Export verified B2B contact data when you need it.
Start free trial Search contactsCheck these profiles if this is not the Sambit Satapathy you were looking for.