Class information for: |
Basic class information |
Class id | #P | Avg. number of references |
Database coverage of references |
---|---|---|---|
8618 | 1235 | 15.5 | 60% |
Hierarchy of classes |
The table includes all classes above and classes immediately below the current class. |
Cluster id | Level | Cluster label | #P |
---|---|---|---|
10 | 4 | OPTICS//PHYSICS, PARTICLES & FIELDS//PHYSICS, MULTIDISCIPLINARY | 1131262 |
89 | 3 | OPTICS//OPTICS LETTERS//FIBER LASER | 77430 |
60 | 2 | FIBER BRAGG GRATING//OPTICS//PHOTONIC CRYSTAL FIBER | 29150 |
8618 | 1 | FIBER OPTIC GYROSCOPE//SUPERFLUORESCENT FIBER SOURCE//MICROSATELLITE | 1235 |
Terms with highest relevance score |
rank | Term | termType | Chi square | Shr. of publ. in class containing term |
Class's shr. of term's tot. occurrences |
#P with term in class |
---|---|---|---|---|---|---|
1 | FIBER OPTIC GYROSCOPE | authKW | 635003 | 4% | 55% | 47 |
2 | SUPERFLUORESCENT FIBER SOURCE | authKW | 255034 | 1% | 74% | 14 |
3 | MICROSATELLITE | address | 198314 | 2% | 42% | 19 |
4 | FIBER OPTIC GYROSCOPE FOG | authKW | 176590 | 1% | 71% | 10 |
5 | RESONATOR FIBER OPTIC GYRO | authKW | 173064 | 1% | 100% | 7 |
6 | INTERFEROMETRIC FIBER OPTIC GYROSCOPE IFOG | authKW | 151429 | 1% | 88% | 7 |
7 | SHUPE EFFECT | authKW | 123617 | 0% | 100% | 5 |
8 | GYROSCOPE | authKW | 115843 | 4% | 9% | 53 |
9 | SUPERFLUORESCENT FIBER SOURCE SFS | authKW | 111252 | 0% | 75% | 6 |
10 | DEPOLARIZER | authKW | 110126 | 1% | 64% | 7 |
Web of Science journal categories |
Rank | Term | Chi square | Shr. of publ. in class containing term |
Class's shr. of term's tot. occurrences |
#P with term in class |
---|---|---|---|---|---|
1 | Optics | 31896 | 66% | 0% | 816 |
2 | Engineering, Electrical & Electronic | 4589 | 37% | 0% | 451 |
3 | Telecommunications | 2782 | 13% | 0% | 161 |
4 | Physics, Applied | 712 | 18% | 0% | 221 |
5 | Spectroscopy | 599 | 7% | 0% | 82 |
6 | Instruments & Instrumentation | 247 | 5% | 0% | 65 |
7 | Engineering, General | 106 | 3% | 0% | 34 |
8 | Physics, Multidisciplinary | 17 | 4% | 0% | 44 |
9 | Engineering, Aerospace | 14 | 1% | 0% | 9 |
10 | Electrochemistry | 2 | 1% | 0% | 13 |
Address terms |
Rank | Term | Chi square | Shr. of publ. in class containing term |
Class's shr. of term's tot. occurrences |
#P with term in class |
---|---|---|---|---|---|
1 | MICROSATELLITE | 198314 | 2% | 42% | 19 |
2 | OPTI ELECT TECHNOL | 49447 | 0% | 100% | 2 |
3 | SCI TECHNOL INERTIAL | 36095 | 1% | 10% | 15 |
4 | FIBER OPT METROL | 32963 | 0% | 67% | 2 |
5 | INERTIAL SYST GRP | 32963 | 0% | 67% | 2 |
6 | PROGRAM CHANGJIANG OLAR INNOVAT TEAM UNI | 32963 | 0% | 67% | 2 |
7 | MICRONANO MEASUREMENT MANIPULAT PHYS | 31503 | 1% | 7% | 18 |
8 | AMSAM RD MG NC | 24723 | 0% | 100% | 1 |
9 | COMIS NACL INVEST CIENT TECN LA PLATA | 24723 | 0% | 100% | 1 |
10 | ELE OOPT YUSONG GU | 24723 | 0% | 100% | 1 |
Journals |
Rank | Term | Chi square | Shr. of publ. in class containing term |
Class's shr. of term's tot. occurrences |
#P with term in class |
---|---|---|---|---|---|
1 | JOURNAL OF LIGHTWAVE TECHNOLOGY | 23577 | 9% | 1% | 107 |
2 | OPTICS LETTERS | 10443 | 9% | 0% | 112 |
3 | APPLIED OPTICS | 8623 | 9% | 0% | 111 |
4 | OPTICAL FIBER TECHNOLOGY | 7010 | 1% | 2% | 18 |
5 | ELECTRONICS LETTERS | 4792 | 7% | 0% | 88 |
6 | IEEE PHOTONICS TECHNOLOGY LETTERS | 4220 | 4% | 0% | 53 |
7 | PROCEEDINGS OF THE SOCIETY OF PHOTO-OPTICAL INSTRUMENTATION ENGINEERS | 3821 | 2% | 1% | 29 |
8 | OPTICAL ENGINEERING | 3090 | 3% | 0% | 42 |
9 | FIBER AND INTEGRATED OPTICS | 2963 | 1% | 1% | 10 |
10 | OPTIKA I SPEKTROSKOPIYA | 2791 | 2% | 0% | 28 |
Author Key Words |
Core articles |
The table includes core articles in the class. The following variables is taken into account for the relevance score of an article in a cluster c: (1) Number of references referring to publications in the class. (2) Share of total number of active references referring to publications in the class. (3) Age of the article. New articles get higher score than old articles. (4) Citation rate, normalized to year. |
Rank | Reference | # ref. in cl. |
Shr. of ref. in cl. |
Citations |
---|---|---|---|---|
1 | ANDRONOVA, IA , MALYKIN, GB , (2002) PHYSICAL PROBLEMS OF FIBER GYROSCOPY BASED ON THE SAGNAC EFFECT.PHYSICS-USPEKHI. VOL. 45. ISSUE 8. P. 793 -817 | 110 | 55% | 31 |
2 | SCHEUER, J , (2016) QUANTUM AND THERMAL NOISE LIMITS OF COUPLED RESONATOR OPTICAL WAVEGUIDE AND RESONANT WAVEGUIDE OPTICAL ROTATION SENSORS.JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS. VOL. 33. ISSUE 9. P. 1827 -1834 | 41 | 76% | 0 |
3 | DELL'OLIO, F , TATOLI, T , CIMINELLI, C , ARMENISE, MN , (2014) RECENT ADVANCES IN MINIATURIZED OPTICAL GYROSCOPES.JOURNAL OF THE EUROPEAN OPTICAL SOCIETY-RAPID PUBLICATIONS. VOL. 9. ISSUE . P. - | 33 | 67% | 21 |
4 | VENEDIKTOV, VY , FILATOV, YV , SHALYMOV, EV , (2016) PASSIVE RING RESONATOR MICRO-OPTICAL GYROSCOPES.QUANTUM ELECTRONICS. VOL. 46. ISSUE 5. P. 437 -446 | 24 | 71% | 3 |
5 | WANG, ZN , YANG, Y , LI, YX , YU, XQ , ZHANG, ZR , LI, ZB , (2012) QUADRATURE DEMODULATION WITH SYNCHRONOUS DIFFERENCE FOR INTERFEROMETRIC FIBER-OPTIC GYROSCOPES.OPTICS EXPRESS. VOL. 20. ISSUE 23. P. 25421 -25431 | 22 | 96% | 1 |
6 | YING, DQ , MAO, JM , LI, Q , JIN, ZH , (2016) A MINIATURIZED COMPACT OPEN-LOOP RFOG WITH DEMODULATION SIGNAL COMPENSATION TECHNIQUE TO SUPPRESS INTENSITY MODULATION NOISE.OPTICS COMMUNICATIONS. VOL. 359. ISSUE . P. 364 -371 | 20 | 95% | 0 |
7 | YING, DQ , WANG, ZY , MAO, JM , JIN, ZH , (2016) AN OPEN-LOOP RFOG BASED ON HARMONIC DIVISION TECHNIQUE TO SUPPRESS LD'S INTENSITY MODULATION NOISE.OPTICS COMMUNICATIONS. VOL. 378. ISSUE . P. 10 -15 | 18 | 95% | 1 |
8 | ZHI, YZ , FENG, LS , LEI, M , WANG, KB , (2013) LOW-DELAY, HIGH-BANDWIDTH FREQUENCY-LOCKING LOOP OF RESONATOR INTEGRATED OPTIC GYRO WITH TRIANGULAR PHASE MODULATION.APPLIED OPTICS. VOL. 52. ISSUE 33. P. 8024-8031 | 21 | 91% | 2 |
9 | WANG, JJ , FENG, LS , ZHI, YZ , LIU, HL , WANG, W , LEI, M , (2013) REDUCTION OF BACKREFLECTION NOISE IN RESONATOR MICRO-OPTIC GYRO BY INTEGER PERIOD SAMPLING.APPLIED OPTICS. VOL. 52. ISSUE 32. P. 7712-7717 | 20 | 91% | 0 |
10 | WANG, W , YANG, B , FAN, Y , (2013) DYNAMIC CHARACTERISTICS OF FIBER OPTIC RING RESONATOR WITH DIFFERENT PHASE MODULATION TECHNIQUES.OPTICS AND LASERS IN ENGINEERING. VOL. 51. ISSUE 9. P. 1106-1112 | 18 | 100% | 1 |
Classes with closest relation at Level 1 |