Please wait a minute...
Chin. Phys. B, 2021, Vol. 30(4): 040201    DOI: 10.1088/1674-1056/abd7df
GENERAL   Next  

Furi-Martelli-Vignoli spectrum and Feng spectrum of nonlinear block operator matrices

Xiao-Mei Dong(董小梅)1, De-Yu Wu(吴德玉)1,†, and Alatancang Chen(陈阿拉坦仓)2
1 School of Mathematical Sciences, Inner Mongolia University, Hohhot 010021, China; 2 Inner Mongolia Normal University, Hohhot 010021, China
Abstract  We investigate the Furi-Martelli-Vignoli spectrum and the Feng spectrum of continuous nonlinear block operator matrices, and mainly describe the relationship between the Furi-Martelli-Vignoli spectrum (compared to the Feng spectrum) of the whole operator matrix and that of its entries. In addition, the connection between the Furi-Martelli-Vignoli spectrum of the whole operator matrix and that of its Schur complement is presented by means of Schur decomposition.
Keywords:  nonlinear operator      spectrum      block operator matrix  
Received:  16 October 2020      Revised:  07 December 2020      Accepted manuscript online:  04 January 2021
PACS:  02.30.Tb (Operator theory)  
  02.70.Hm (Spectral methods)  
  02.30.Jr (Partial differential equations)  
Fund: Project supported by the National Natural Science Foundation of China (Grant Nos. 11561048 and 11761029) and the Natural Science Foundation of Inner Mongolia, China (Grant Nos. 2019MS01019 and 2020ZD01).
Corresponding Authors:  Corresponding author. E-mail: wudeyu2585@163.com   

Cite this article: 

Xiao-Mei Dong(董小梅), De-Yu Wu(吴德玉), and Alatancang Chen(陈阿拉坦仓) Furi-Martelli-Vignoli spectrum and Feng spectrum of nonlinear block operator matrices 2021 Chin. Phys. B 30 040201

1 Amar A B, Jeribi A and Mnif M 2008 Numerical Functional Analysis and Optimization 29 1
2 Jeribi A, Krichen B and Mefteh B 2013 J. Biol. Dynam. 7 218
3 Qu G Z, Zhang S L and Li Y L 2014 Chin. Phys. B 23 110202
4 Wang N 2012 Chin. Phys. B 21 010202
5 Qin X 2018 Chin. Phys. B 27 100203
6 Issara I and Narin P 2011 Fixed Point Theory and Applications 2011 1
7 Catana P Math. Rep. 9 249
8 Wu Y X and Liang Z D 2006 Nonlinear Anal. 65 1913
9 Appell J and Dörfner M 1997 Nonlinear Anal. TMA 28 1955
10 Appell J, De E and Vignoli A 2000 Nonlinear Anal. 40 73
11 Appell J, De E and Vignoli A 2004 Nonlinear Spectral Theory (Berlin: de Gruyter)
12 Appell J, Giorgieri E and Väth M 2001 Ann. Matem. Pura Appl. 179 215
13 Ize J and Vignoli A 2013 J. Fixed Point Theor. Appl. 13 51
14 Santucci P and Väth M 2001 Ann. Matem. Pura Appl. 180 255
15 Furi M, Martelli M and Vignoli A 1978 Ann. Matem. Pura Appl. 118 229
16 Feng W 1997 Abstract Appl. Anal. 2 163
17 Neuberger J W 1969 Pacific J. Math. 31 157
19 Amar A, Jeribi A and Krichen B 2014 Math. Slovaca 64 155
20 Tretter C2008 Spectral Theory of Block Operator Matrices and Applications (London: Imperial College Press)
21 Barraa M and Boumazgour M 2003 Proc. Amer. Math. Soc. 131 3083
22 Du H and Pan J 1994 Proc. Amer. Math. Soc. 121 761
23 Wu D Y and Chen A 2012 Linear Multilinear Algebra 60 613
24 Chen A, Bai Q M and Wu D Y 2016 Sci. Sin.-Math. 46 157
25 Song K, Hou G L and Chen A 2013 Chin. Phys. B 22 094601
26 Qi G W, Hou G L and Chen A 2011 Chin. Phys. B 20 124601
27 Grishanov E N, Eremin D A, Ivanov D A and Popov I Y 2016 Chin. Phys. B 25 047303
28 Zhang G T, Huang J J and Chen A 2012 Acta Phys. Sin. 61 140205 (in Chinese)
29 Kaddachi N, Jeribi A and Krichen B 2013 Math. Meth. Appl. Sci. 36 659
30 Jeribi A, Kaddachi N and Krichen B 2020 Bull. Malays. Math. Sci. Soc. 43 1047
31 Hashem H, El-Sayed A and Baleanu D 2019 Mathematics 7 856
32 Kaddachi N 2018 J. Phys. Math. 9 285
33 Hashem H H G 2017 Filomat 31 5169
34 Jeribi A, Kaddachi N and Krichen B 2018 Bull. Malays. Math. Sci. Soc. 41 893
35 Akhmerov R R, Kamenskij M I, Potapov A S, Rodkina A E and Sadovskij B N 1992 Measures of Noncompactness and Condensing Operators (Basel: Birkhäuser)
36 Furi M, Martelli M and Vignoli A Atti Accad. Naz. Lincei Rend. Cl. Sci. Fis. Mat. Nat. 60 21
37 Nagel R1985 Conferenze del Seminario di Matematica dell'Universit\`a di Bari 203 29
38 Nagel R 1989 Math. Z. 201 57
39 Nagel R 1990 J. Funct. Anal. 89 291
[1] First-principles study of the bandgap renormalization and optical property of β-LiGaO2
Dangqi Fang(方党旗). Chin. Phys. B, 2023, 32(4): 047101.
[2] Investigation of spatial structure and sympathetic cooling in the 9Be+40Ca+ bi-component Coulomb crystals
Min Li(李敏), Yong Zhang(张勇), Qian-Yu Zhang(张乾煜), Wen-Li Bai(白文丽), Sheng-Guo He(何胜国), Wen-Cui Peng(彭文翠), and Xin Tong(童昕). Chin. Phys. B, 2023, 32(3): 036402.
[3] Spin pumping by higher-order dipole-exchange spin-wave modes
Peng Wang(王鹏). Chin. Phys. B, 2023, 32(3): 037601.
[4] In situ temperature measurement of vapor based on atomic speed selection
Lu Yu(于露), Li Cao(曹俐), Ziqian Yue(岳子骞), Lin Li(李林), and Yueyang Zhai(翟跃阳). Chin. Phys. B, 2023, 32(2): 020602.
[5] Asymmetrical spiral spectra and orbital angular momentum density of non-uniformly polarized vortex beams in uniaxial crystals
Ling-Yun Shu(舒凌云), Ke Cheng(程科), Sai Liao(廖赛), Meng-Ting Liang(梁梦婷), and Ceng-Hao Yang(杨嶒浩). Chin. Phys. B, 2023, 32(2): 024211.
[6] Polyhedral silver clusters as single molecule ammonia sensor based on charge transfer-induced plasmon enhancement
Jiu-Huan Chen(陈九环) and Xin-Lu Cheng(程新路). Chin. Phys. B, 2023, 32(1): 017302.
[7] Synchronous detection of multiple optical characteristics of atmospheric aerosol by coupled photoacoustic cavity
Hua-Wei Jin(靳华伟), Ren-Zhi Hu(胡仁志), Pin-Hua Xie(谢品华), and Ping Luo(罗平). Chin. Phys. B, 2022, 31(6): 060703.
[8] Maximum entropy mobility spectrum analysis for the type-I Weyl semimetal TaAs
Wen-Chong Li(李文充), Ling-Xiao Zhao(赵凌霄), Hai-Jun Zhao(赵海军),Gen-Fu Chen(陈根富), and Zhi-Xiang Shi(施智祥). Chin. Phys. B, 2022, 31(5): 057103.
[9] Generation of mid-infrared supercontinuum by designing circular photonic crystal fiber
Ying Huang(黄颖), Hua Yang(杨华), and Yucheng Mao(毛雨澄). Chin. Phys. B, 2022, 31(5): 054211.
[10] Near-zero thermal expansion in β-CuZnV2O7 in a large temperature range
Yaguang Hao(郝亚光), Hengli Xie(谢恒立), Gaojie Zeng(曾高杰), Huanli Yuan(袁焕丽), Yangming Hu(胡杨明), Juan Guo(郭娟), Qilong Gao(高其龙), Mingju Chao(晁明举), Xiao Ren(任霄), and Er-Jun Liang(梁二军). Chin. Phys. B, 2022, 31(4): 046502.
[11] Interrogation of optical Ramsey spectrum and stability study of an 87Sr optical lattice clock
Jing-Jing Xia(夏京京), Xiao-Tong Lu(卢晓同), and Hong Chang(常宏). Chin. Phys. B, 2022, 31(3): 034209.
[12] Entanglement spectrum of non-Abelian anyons
Ying-Hai Wu(吴英海). Chin. Phys. B, 2022, 31(3): 037302.
[13] Beam alignments based on the spectrum decomposition of orbital angular momentums for acoustic-vortex communications
Gepu Guo(郭各朴), Xinjia Li(李昕珈), Qingdong Wang(王青东), Yuzhi Li(李禹志), Qingyu Ma(马青玉), Juan Tu(屠娟), and Dong Zhang(章东). Chin. Phys. B, 2022, 31(12): 124302.
[14] Observation of source/drain bias-controlled quantum transport spectrum in junctionless silicon nanowire transistor
Yang-Yan Guo(郭仰岩), Wei-Hua Han(韩伟华), Xiao-Di Zhang(张晓迪), Jun-Dong Chen(陈俊东), and Fu-Hua Yang(杨富华). Chin. Phys. B, 2022, 31(1): 017701.
[15] Distributed analysis of forward stimulated Brillouin scattering for acoustic impedance sensing by extraction of a 2nd-order local spectrum
Yu-Lian Yang(杨玉莲), Jia-Bing Lin(林佳兵), Li-Ming Liu(刘黎明), Xin-Hong Jia(贾新鸿), Wen-Yan Liang(梁文燕), Shi-Rong Xu(许世蓉), and Li Jiang(姜利). Chin. Phys. B, 2021, 30(8): 084205.
No Suggested Reading articles found!