Ðн¡½²Ì³Ñ§Êõ½²×ù
µÚ429ÆÚ
¹¦·ò£º2019Äê12ÔÂ27ÈÕ£¨ÖÜÎ壩ÉÏÎç10£º00-11£º30
µØÖ·£ºÐ£±¾²¿¶«ÇøÏèӢ¥T516ÊÒ
½²×ù£ºÎ¢ÄɹâѧƵÂÊÊá
Ñݽ²ÕߣºÁõ¿¥Çï ²©Ê¿×êÑÐÔ± ÂåÉ£Áª¹úÀí¹¤Ñ§Ôº£¨EPFL£©
Ñݽ²Õß¼ò½é£º
Áõ¿¥ÇÈðÊ¿ÂåÉ£Áª¹úÀí¹¤(EPFL)µÄÔÚ¶Á²©Ê¿£¬±ðÀëÓÚ2012Äê»ñÖйú¿ÆÑ§¼¼Êõ´óѧÎïÀíѧѧʿ£¬2016Äê»ñµÂ¹úUniversity of Erlangen-Nuremberg¹âѧ˶ʿ²¢»ñ×î¸ß±ÏÒµÈÙÓþ¡£2015Äê²ÎÓëTobias Kippenberg×飬²©Ê¿×êÑз½ÏòΪ»ùÓÚµª»¯¹èºÍµª»¯ÂÁµÄ·ÇÏßÐÔ¼¯³É¹â×Óѧ¡£²©Ê¿ÆÚ¼ä£¬¹ú¼Ê³õ´ÎʵÏÖµÍÓÚ1dB/mËðºÄµÄ¼¯³Éµª»¯¹è²¨µ¼£¬²¢»ùÓÚ´ËʵÏÖ±¶Æµ³Ì¹Â×ÓÆµÂÊÊáºÍ10GHz³Á¸´ÆµÂʵĹÂ×ÓÆµÂÊÊᣬÓÃÓÚÌìÌåÕÉÁ¿£¬¼¤¹âÀ×´ïºÍ¹âѧÓйضϲãɨÃè¡£×êÑÐÁìÓòÖØÒªÔ̺¬£¬¼¯³É¹â×Óѧ¡¢ÆµÂÊÊá¡¢MEMS¡¢Î¢²¨¹â×ÓѧµÈ£¬ÒÑÔÚNature Photonics¡¢Optica¡¢PRL¡¢ Nature CommunicationsµÈ¹ú¼Ê³ÛÃû¿¯Îï°ä·¢¸ßˮƽÂÛÎÄ10ÓàÆª¡£
½²×ùÌáÒª£º
Optical frequency combs are broadband light sources consisting of equidistant grid of frequencies. Over the past decades, optical frequency combs have revolutionized the fields of timing, spectroscopy and metrology. A recent breakthrough is the generation of frequency combs in optical microresonators based on photonic integrated circuit (PIC), thanks to the established semiconductor nano-fabrication technology. This new type of frequency combs, often called as ¡°microcombs¡±, enables scalable, chip-scale, turnkey frequency combs at battery power consumption level, and have now reached a commercialization level for industrial applications.
The talks given by Dr. Candidate Junqiu Liu will cover the fundamental operational principles and latest technical development (particularly the fabrication process) in the field of integrated microcombs, as well as several key applications using microcombs for chip-scale frequency synthesizers, optical clocks, LIDAR, dual-comb spectroscopy, microwave photonics, as well as astrophysical spectometer calibration.
Ô¼ÇëÈË£ºÍ¨Ñ¶ÓëÐÅÏ¢¹¤³ÌѧԺ ¹ùº£Èó½ÌÊÚ
Ó½Ó¿í´óÀÏʦºÍѧÉú²ÎÓ룡
³Ð°ìµ¥Ôª£ºÌØÖÖ¹âÏËÓë¹â½ÓÈëÍøÊ¡²¿¹²½¨¹ú¶È³Áµã³¢ÊÔÊÒÔì¾Í»ùµØ
ÌØÖÖ¹âÏËÓëÏȽøÍ¨Ñ¶½ÌÓý²¿¹ú¼ÊºÏ×÷½áºÏ³¢ÊÔÊÒ
а쵥Ԫ£ºÉϺ£ÏȽøÍ¨Ñ¶ÓëÊý¾Ý¿ÆÑ§×êÑÐÔº
¡¶ÀûÓÿÆÑ§Ñ§±¨¡·±à×벿