All Stories

  1. Photoemission of Plasmonic Gold Nanostars in Laser-Controlled Electron Current Devices for Technical and Biomedical Applications
  2. Modeling of Laser-Induced Plasmon Effects in GNS-DLC-Based Material for Application in X-ray Source Array Sensors
  3. Numerical modeling of plasmonic properties of gold nanostars to prove the threshold nature of their modification under laser pulse
  4. Nanoscale Metal Blade as a A Visible and Near-IR Tunnel Photosensor
  5. Modeling of hyperthermia induced by functionalized gold nanorods bound to Staphylococcus aureus under NIR laser radiation
  6. On the localization of thermal sources existing in a field emission planar nanostructure with a DLC film on a metal edge
  7. Spectral and polarization characteristics of a broadband vacuum photosensor with tunnel emission from a metal nanoscale blade
  8. The peculiarities of localized laser heating of a tissue doped by gold nanostars
  9. Thermal optics of ordered arrays of plasmon nanoparticles in context of SERS, cell optoporation, and pathogen destruction
  10. Experimental study of a broadband vacuum photosensor with the tunnel emission from a metal nanoscale blade
  11. Stabilization of Field- and Photoemission of a Planar Structure with a Nanosized Diamond-Like Carbon Film
  12. Features of Field Emission and Formation of Electron Beam in a Multi-Electrode Planar Cathode
  13. Model of Tunneling Processes in Composite Nanostructures for Vacuum Field- and Photoemission Devices
  14. Spectral characteristics of tunnel photodiodes based on DLC nanofilms
  15. Modeling the field localization in DLC films using the tunneling microscopy methods
  16. On stabilization of field emission and increase in the current density
  17. Numerical modeling and analytical evaluation of light absorption by gold nanostars
  18. Model of optical phantoms thermal response upon irradiation with 975 nm dermatological laser
  19. Tunnel electron photoemission in the nanoscale DLC film structure
  20. Stabilization of enhanced field emission of the film DLC structure
  21. Construction and manufacturing technology of photo emitter based on the use of carbon nanostructure with field localization
  22. Planar field emission cathode based on nanoscale carbon structure: Progress level and development trends
  23. PPT/PDT treatment of tumors, AuNPs for cell optoporation, laser heating of tissues
  24. Theoretical and experimental study of characteristics of the planar tetrode with field emission of diamond-like carbon film
  25. The modeling of local distribution of the temperature photo-induced by ensemble of nanoparticles
  26. Average current density (0.1–0.3 A cm–2) is ensured. The working life of cathode reaches 3000 h.
  27. On the problems of stability and durability of field-emission current sources for electrovacuum devices
  28. Planar multielectrode current source based on nanoscale carbon structures with the low-threshold field emission
  29. Spatio-temporal thermal processes induced by pulsed laser irradiation of medium doped by nanoparticles
  30. Quantification of laser local hyperthermia induced by gold plasmonic nanoparticles
  31. Design concept of field emission cathode for microwave vacuum device with ionic protection of nanosized blade emitter
  32. Autoemission structures of nanosized carbon with ionic protection. Studying the prospects of reliable control in forming structures
  33. Broadband photosensor with a tunable frequency range, built on the basis of nanoscale carbon structure with field localization
  34. Nanosized structures with the field localization: New opportunities for precise control of photonic and electronic devices
  35. Controlling the red boundary of the tunneling photoeffect in nanodimensional carbon structures in a broad (UV-IR) wavelength range
  36. New solutions for designing promising devices based on low-voltage field emission from carbon nanostructures
  37. Implementation field-emitting planar matrices In electron-optic systems of powerful RF devices
  38. Electron-optical systems with planar field-emission cathode matrices for high-power microwave devices
  39. Scaling of photothermal effects accounting for localization of CW and pulse laser radiation within plasmonic nanoparticles
  40. Investigation of dynamic properties of precise temperature regulation of resonator system
  41. Prospects for application of field emission structures as the current sources of powerful O-type devices
  42. Development of durable carbon field emission nanostructures for vacuum electronics
  43. Using carbon-containing field-emission structures in cathodoluminescent light sources
  44. Thermal energy transfer by plasmon-resonant composite nanoparticles at pulse laser irradiation
  45. Laser-induced thermal dynamics and temperature localization phenomenon in tissues and cells doped with nanoshells
  46. Novel thermal effect at nanoshell heating by pulsed laser irradiation: hoop-shaped hot zone formation
  47. Control of electrostatic field localization in field-emission structures
  48. On the problem of local tissue hyperthermia control: multiscale modelling of pulsed laser radiation action on a medium with embedded nanoparticles
  49. Problems of the reliability and durability of dynamically loaded structures from physically nonlinear material
  50. Mechanism of ion loading of point emitters in planar edge field emission structures
  51. Combined numerical techniques for calculation of light and temperature distribution
  52. Modeling of temperature distribution in the skin irradiated by visible laser-light
  53. Adaptive finite element program for modeling of thermal processes during laser-tissue interaction
  54. Temperature distribution in biotissues under cw low-intensity laser irradiation
  55. The modeling of electrodynamics and thermodynamics processes while electromagnetic field and dielectric interaction