We’re putting the final touches on our new badges platform. Badge issuance remains temporarily paused, but all completions are being recorded and will be fulfilled once the platform is live. Thank you for your patience.
Photonics

Photonics

Topics related to Lumerical and more.

Q factor calculation-Duplicate

    • sme8
      Subscriber

      Hey,

      I use an embedded high-Q analyzer in the FDTD module. Essentially, I use ring-down to estimate the quality factor of ultra-high Q factors. However, I realized that the Q factor it calculates is highly dependent on the source settings. For example, I set all the parameters the same for two simulations and only modified the wavelength of the source. I found that if I set my source wavelength to 700-900 nm, the quality factor is different from another simulation with a wavelength of 740-760 nm. Assume my desired resonance occurs at 750 nm. Please be informed that and the resonant wavelength does not change with different source wavelengths. I use an auto non-uniform mesh for my simulations.


      I also modified the time domain properties of my source to have a very narrow band signal in the frequency domain (consequently wide in the time domain) near my resonant wavelength, and again, the Q factor changed dramatically.

      What do you think? Which one is more accurate?

      Thank you for your support and help.

    • Guilin Sun
      Ansys Employee

      This post is replied here Q factor calculation

Viewing 1 reply thread
  • The topic ‘Q factor calculation-Duplicate’ is closed to new replies.